PaperPanorama

HEP Phenomenology·hep-ph

Tue·Dec 20, 2022

59 papers40 primary·19 cross-listed·reconstructed*

  1. 01*

    TASI Lectures on Cosmic Signals of Fundamental Physics

    Daniel Green🇺🇸

    The history of the Universe and the forces that shaped it are encoded in maps of the cosmos. From understanding these maps, we gain insights into nature that are inaccessible by other means. Unfortunately, the connection between fundamental physics and cosmic observables is often left to experts (and/or computers), making the general lessons from data obscure to many particle theorists. Fortunately, the same basic principles that govern the interactions of particles, like locality and causality, also control the evolution of the Universe as a whole and the manifestation of new physics in data. By focusing on these principles, we can understand more intuitively how the next generation of cosmic surveys will inform our understanding of fundamental physics. In these lectures, we will explore this relationship between theory and data through three examples: light relics () and the cosmic microwave background (CMB), neutrino mass and gravitational lensing of the CMB, and primordial non-Gaussianity and the distribution of galaxies. We will discuss both the theoretical underpinnings of these signals and the real-world obstacles to making the measurements.

    hep-phastro-ph.COgr-qchep-thPoS(2024)·22 citations
  2. 02*

    Is the muon a third family lepton?

    Giacomo Cacciapaglia🇫🇷 · Aldo Deandrea🇫🇷 · Shahram Vatani🇮🇹

    We propose a new family structure for the Standard Model fermions, where the muon is assigned to the third family, taking the placeholder from the tau lepton. This reassignment, which is a mere choice of convention in the Standard Model, becomes physically meaningful in the presence of new physics assuming a direct link between quarks and leptons. In fact, when quark and leptons are coupled by new interactions, the choice of which lepton is assigned to a particular quark generation brings physical consequences, revealing potentially meaningful patterns in the masses and mixings, while pointing to precise and testable predictions for experiments.

    hep-phPRD(2023)·1 citation
  3. 03*

    Strong Lensing of High-Energy Neutrinos

    Yoon Chan Taak🇺🇸 · Tommaso Treu🇺🇸 · Yoshiyuki Inoue🇯🇵 · Alexander Kusenko🇺🇸

    We consider the effects of strong gravitational lensing by galaxy-scale deflectors on the observations of high-energy (EGeV) neutrinos (HEN). For HEN at cosmological distances, the optical depth for multiple imaging is , implying that while we do not expect any multiply imaged HEN with present samples, next-generation experiments should be able to detect the first such event. We then present the distribution of expected time delays to aid in the identification of such events, in combination with directional and energy information. In order to assist in the evaluation of HEN production mechanisms, we illustrate how lensing affects the observed number counts for a variety of intrinsic luminosity functions of the source population. Finally, we see that the lensing effects on the cosmic neutrino background flux calculation would be negligible by taking kpc-scale jets as an example.

    hep-phastro-ph.HEPRD(2023)·6 citations
  4. 04*

    Hot Spot model of Nucleon and Double Parton Scattering

    B. Blok (Technion)🇮🇱 · R. Segev (Technion)🇮🇱 · M. Strikman (Penn State University)🇺🇸

    We calculate the rate of double parton scattering (DPS) in proton - proton collisions in the framework of the recently proposed hot spot model of the nucleon structure. The resulting rate, especially for the case of three hot spots, appears to be in tension with the current experimental data on DPS at the LHC.

    hep-phhep-exnucl-exnucl-thEPJC(2023)·4 citations
  5. 05*

    On the relation between the soft and hard parts of the transverse momentum distribution

    C. Pajares🇪🇸 · J. E. Ramírez🇲🇽

    Usually, the transverse momentum distribution is described by a sum of an exponential decay term plus a decreasing power like contribution representing the soft non-perturbative and hard perturbative QCD collisions, respectively. In this paper, we derive an analytical function that can describe the whole transverse momentum spectrum. This is obtained using a -Gaussian distribution to describe the string tension fluctuations. The parameter determines the departure of the thermal distribution as well as the minimum length that can be explored at high transverse momentum. We also show that the ratio between both scales only depends on the parameter.

    hep-phEPJA(2023)·10 citations
  6. 06*

    Spatial diffusion of heavy quarks in background magnetic field

    Sarthak Satapathy🇮🇳 · Sudipan De🇮🇳 · Jayanta Dey🇮🇳 · Sabyasachi Ghosh🇮🇳

    The ratio of shear viscosity to entropy density shows a valley-shaped pattern well-known in the community of heavy-ion physics. Diffusion coefficients of heavy quark and meson shows the similar structure, and both sketches have become quite popular in the community. Present work has attempted a finite magnetic field extension of the diffusion coefficients of heavy quark and meson. Using Einstein's diffusion relation, we calculated heavy quark and heavy meson diffusion by the ratio of conductivity to susceptibility in the kinetic theory framework of relaxation time approximation. The relaxation time of heavy quark and meson are tuned from the knowledge of earlier works on spatial diffusion estimations, and then we have extended the framework for a finite magnetic field, where our outcomes have revealed two aspects - anisotropic and quantum aspects of diffusion with future possibilities of phenomenological signature.

    hep-phhep-exnucl-thPRC(2024)·13 citations
  7. 07*

    Nucleon resonances and transition form factors

    Volker D. Burkert🇺🇸

    This is a contribution to the review 50 Years of Quantum Chromodynamics edited by F. Gross and E. Klempt, to be published in Journal EPJC. This contribution reviews the nucleon resonance transition form factors determined from meson electro-production experiments at electron accelerator facilities, i.e. this contribution focuses on space-like transition form factors and amplitudes. Comparisons are made when available to LQCD and to approaches with traceable links to strong QCD and to advanced quark model calculations

    hep-phhep-latnucl-ex9 citations
  8. 08*

    A novel method for searching the - mixing effect in the angular distribution analysis of a four-body decay

    Zhi Peng Xing🇨🇳 · Yu ji Shi🇩🇪

    In this work, we raised a novel method for searching the - mixing effect in an angular distribution analysis of the decay, where the mixing effect can be observed by the appearance of the resonant. Armed with this angular distribution, the decay branching fraction and the forward-backward asymmetry are predicted. We pointed out that the forward-backward asymmetry, as a function of the invariant mass square of and the - mixing angle , can be used to distinguish the two resonants and even provide a possibility to determine the exact mixing angle.

    hep-phPRD(2023)·7 citations
  9. 09*

    Branching ratio and violation of decays in a modified perturbative QCD approach

    Ru-Xuan Wang🇨🇳 · Mao-Zhi Yang🇨🇳

    We calculate the branching ratio and violations for decays in a modified perturbative QCD approach based on factorization. The resummation effect of the transverse momentum regulates the endpoint singularity. Using the meson wave function that is obtained in the relativistic potential model, soft contribution cannot be suppressed effectively by Sudakov factor. Soft scale cutoff and soft , and form factors have to be introduced. The most important next-to-leading-order contributions from the vertex corrections, the quark loops, and the magnetic penguins are also considered. In addition, the contribution of the color-octet hadronic matrix element is included which is essentially of long-distance dynamics. Our predictions for branching ratios and violations are in good agreement with the experimental data. Especially the theoretical result of dramatic difference between the violations of and is consistent with experimental measurement, therefore the puzzle in decays can be resolved in our way of the modified perturbative QCD approach.

    hep-phhep-exPRD(2023)·7 citations
  10. 10*

    Searching for exotic Higgs bosons from top quark decays at the HL-LHC

    Gautam Bhattacharyya🇮🇳 · Indrani Chakraborty🇮🇳 · Dilip Kumar Ghosh🇮🇳 · Tapoja Jha🇮🇳 · Gourab Saha🇮🇳

    Exotic spin- states with unusual couplings with the gauge and matter fields of the Standard Model are worth exploring at the CERN LHC. Though our approach is largely model independent, we take inspiration from flavor models based on some discrete symmetries which predict a set of a scalar and a pseudoscalar having purely off-diagonal Yukawa interactions with quarks and leptons. In a previous paper, some of us explored how to decipher such exotic scalar and pseudoscalar states whose off-diagonal Yukawa couplings involve light quarks. In this work we follow a complementary path and focus on the Yukawa couplings that necessarily involve a top quark. If one such spin- state is lighter than the top quark, then the rare decay of the latter, on account of the high yield of the events, could provide a potential hunting ground of those exotic states particularly during the high luminosity phase of the LHC run. We carry out an exhaustive collider analysis of some promising signatures of those exotic states using sophisticated Machine Learning techniques and obtain considerable signal significance.

    hep-phEPJC(2024)·3 citations
  11. 11*

    Electromagnetic energy loss of axion stars

    Andras Patkos🇭🇺

    The rate of energy exchange of spatially localized and gravitationally bound axion configurations with electromagnetic radiation is investigated in presence of strong static magnetic field. Fully analytic treatment is achieved based on variationally optimized separable spatio-temporal clump profiles. For dilute axion stars the equation of the energy variation is reinterpreted as a rate equation of the axion number. Its solutions hints to an asymptotic increase of the clump size.

    hep-phhep-thPRD(2023)·3 citations
  12. 12*

    Dark matter produced from right-handed neutrinos

    Shao-Ping Li🇨🇳 · Xun-Jie Xu🇨🇳

    Right-handed neutrinos (RHNs) provide a natural portal to a dark sector accommodating dark matter (DM). In this work, we consider that the dark sector is connected to the standard model only via RHNs and ask how DM can be produced from RHNs. Our framework concentrates on a rather simple and generic interaction that couples RHNs to a pair of dark particles. Depending on whether RHNs are light or heavy in comparison to the dark sector and also on whether one or both of them are in the freeze-in/out regime, there are many distinct scenarios resulting in rather different results. We conduct a comprehensive and systematic study of all possible scenarios in this paper. For illustration, we apply our generic results to the type-I seesaw model with the dark sector extension, addressing whether and when DM in this model can be in the freeze-in or freeze-out regime. Some observational consequences in this framework are also discussed.

    hep-phastro-ph.COastro-ph.HEJCAP(2023)·26 citations
  13. 13*

    Proton-proton interactions at the Highest Energies: the Grey-Disk and the Core-Corona models

    Ruben Conceição🇵🇹 · Mário Pimenta🇵🇹

    In this letter, the Grey-Disk and the Core-Corona models are combined in a scenario that aims to explain different unexpected features observed in the interactions of the highest energy particles in the Earth's atmosphere. In particular, the observed distributions of and are explained, assuming that the ultra-high-energy cosmic ray spectrum is dominated by protons produced by a few extra-galactic sources with different injection spectra and maximum energy cutoffs. The compliance of this heterodox scenario with other relevant observations as the instep region in the energy spectrum, the event-by-event correlations between and the detected signal at the ground and the absence of detection, so far, of UHE neutrinos or photons, are also briefly discussed. If confirmed, such a scenario would dramatically change the present understanding of the UHECR primary composition and, thus, the characteristics of their sources.

    hep-phastro-ph.HE0 citations
  14. 14*

    Revamping Kaluza-Klein dark matter in an orbifold theory of flavor

    Francisco J. de Anda🇲🇽 · Omar Medina🇪🇸 · José W.F. Valle🇪🇸 · Carlos A. Vaquera-Araujo🇲🇽

    We suggest a common origin for dark matter, neutrino mass and family symmetry within the orbifold theory proposed in [arXiv:1910.05605v2,arXiv:2004.06735v2]. Flavor physics is described by an family symmetry that results naturally from compactification. WIMP Dark matter emerges from the first Kaluza-Klein excitation of the same scalar that drives family symmetry breaking and neutrino masses through the inverse seesaw mechanism. In addition to the "golden" quark-lepton mass relation and neutrino predictions for decay, the model provides a good global description of all flavor observables.

    hep-phhep-thPRD(2023)·2 citations
  15. 15*

    Heavy hybrid decays to quarkonia

    Nora Brambilla🇩🇪 · Wai Kin Lai🇨🇳 · Abhishek Mohapatra🇩🇪 · Antonio Vairo🇩🇪

    The decay rates of the XYZ exotics discovered in the heavy quarkonium sector are crucial observables for identifying the nature of these states. Based on the framework of nonrelativistic effective field theories, we calculate the rates of semi-inclusive decays of heavy quarkonium hybrids into conventional heavy quarkonia. We compute them at leading and subleading power in the inverse of the heavy-quark mass, extending and updating previous results. We compare our predictions with experimental data of inclusive decay rates for candidates of heavy quarkonium hybrids.

    hep-phhep-exhep-latPRD(2023)·32 citations
  16. 16*

    Detecting heavy neutral SUSY Higgs bosons decaying to sparticles at the high-luminosity LHC

    Howard Baer🇺🇸 · Vernon Barger🇺🇸 · Xerxes Tata🇺🇸 · Kairui Zhang🇺🇸

    In supersymmetry (SUSY) models with low electroweak naturalness (natSUSY), which have been suggested to be the most likely version of SUSY to emerge from the string landscape, higgsinos are expected at the few hundred GeV scale whilst electroweak gauginos inhabit the TeV scale. For TeV-scale heavy neutral SUSY Higgs bosons H and A, as currently required by LHC searches, then the dominant decay modes of H, A are into gaugino plus higgsino provided these decays are kinematically open. The light higgsinos decay to soft particles so are largely invisible whilst the gauginos decay to W, Z or h plus missing transverse energy (MET). Thus, we examine the viability of H,A-> W+MET, Z+MET and h+MET signatures at the high luminosity LHC (HL-LHC) in light of large Standard Model (SM) backgrounds from (mainly) t\bar{t}, VV and Vh production (where V=W, Z). We also examine whether these signal channels can be enhanced over backgrounds by requiring the presence of an additional soft lepton from the decays of the light higgsinos. We find significant regions in the vicinity of m_A~ 1-2 TeV of the m_A vs. \tan\beta plane which can be probed at the high luminosity LHC using these dominant signatures by HL-LHC at 5\sigma and at the 95% confidence level (CL).

    hep-phSymmetry(2023)·13 citations
  17. 17*

    Accommodating the CDF W-boson Mass Measurement in the Beautiful Mirror Model

    Shengdu Chai🇨🇳 · Jiayin Gu🇨🇳 · Lian-Tao Wang🇺🇸

    The W-boson mass measurement recently reported by the CDF II experiment exhibits a significant deviation from both the Standard Model prediction and previous measurements. There is also a long-standing deviation between the Standard Model prediction of the forward-backward asymmetry of the bottom quark () and its measurement at the LEP experiment. The Beautiful Mirror model, proposed to resolve the discrepancy, introduces vector-like quarks that modify the W-boson mass at one-loop level. In this study, we find an interesting region in the model parameter space that could potentially explain both discrepancies, which puts the new quarks in the multi-TeV region. This region is mostly consistent with current LHC bounds from direct searches and Higgs coupling measurements, but will be thoroughly probed at the High Luminosity LHC. As such, the Beautiful Mirror model as an explanation of the and discrepancies could be confirmed or falsified in the near future.

    hep-phhep-exPRD(2023)·1 citation
  18. 18*

    Bose-Einstein Condensation and Dissipative Dynamics in a Relativistic Pion Gas

    Kshitish Kumar Pradhan🇮🇳 · Dushmanta Sahu🇮🇳 · Captain R. Singh🇮🇳 · Raghunath Sahoo🇮🇳

    Pion condensation in ultra-relativistic collisions presents a compelling theoretical phenomenon with significant implications for the dynamics of hadronic matter. Various theoretical frameworks offer insight into the nature of high-temperature Bose-Einstein condensation (BEC). The present study investigates the dissipative behavior of a relativistic pion gas undergoing Bose-Einstein condensation (BEC) in ultra-relativistic heavy-ion collisions. Further, we obtain viscosity (), bulk viscosity (), and speed of sound () by employing the Boltzmann transport equation with the relaxation time approximation. Findings show a substantial drop in and with the fractional increase in condensation. This effect is becoming more evident in larger systems approaching the thermodynamic limit. Alongside the reduction in viscosities, the speed of sound also decreases with increasing condensation, indicating a softening of the equation of state. The analysis of finite-size effects reveals that larger systems exhibit more pronounced signatures of BEC. These results suggest that pion condensation can influence the hydrodynamic evolution of the hadronic phase in heavy-ion collisions, with consequential implications for interpreting collective flow observables and the underlying equation of state.

    hep-phhep-exnucl-exnucl-thPRD(2025)·4 citations
  19. 19*

    Flux-integrated semiexclusive cross sections for charged-current quasielastic and neutral-current elastic neutrino scattering off Ar and a sterile neutrino oscillation study

    A. V. Butkevich🇷🇺

    Flux-integrated semiexclusive differential cross sections for charged-current quasielastic and neutral-current elastic neutrino scattering on argon are analyzed. The cross sections are calculated using the relativistic distorted-wave impulse approximation with values of the nucleon axial mass GeV and 1.2 GeV. The elastic scattering cross sections are also computed for different strange quark contributions to the neutral-current axial form factor. The flux-integrated differential cross sections as functions of reconstructed neutrino energy are evaluated for the far detector of the SBN experiment. The effects of the short base-line neutrino oscillations are taken into account in a 3+1 framework. We found that cross sections depend on oscillation parameters and the ratio of the measured and predicted cross sections can be used in a sterile neutrino oscillation study.

    hep-phPRD(2023)·5 citations
  20. 20*

    Studying the 3+1D structure of the Glasma using the weak field approximation

    Andreas Ipp🇦🇹 · Markus Leuthner🇦🇹 · David I. Müller🇦🇹 · Soeren Schlichting🇩🇪 · Pragya Singh🇫🇮

    We extend the weak field approximation for the Glasma beyond the boost-invariant approximation, which allows us to compute rapidity-dependent observables in the early stages of heavy-ion collisions. We show that in the limit of small fields, the weak field approximation agrees quantitatively with non-perturbative lattice simulations. Furthermore, we demonstrate that the rapidity profile of the transverse pressure is determined by longitudinal color correlations within the colliding nuclei.

    hep-phnucl-thEPJ Web Conf.(2022)·6 citations
  21. 21*

    Twist-four gravitational form factor at NNLO QCD from trace anomaly constraints

    Kazuhiro Tanaka (Juntendo Univ.)🇯🇵

    It is known that the trace anomaly in the QCD energy-momentum tensor can be attributed to the anomalies for each of the gauge-invariant quark part and gluon part of , and their explicit three-loop formulas have been derived in the scheme in the dimensional regularization. The matrix elements of this quark/gluon decomposition of the QCD trace anomaly allow us to derive the QCD constraints on the hadron's gravitational form factors, in particular, on the twist-four gravitational form factor, . Using the three-loop quark/gluon trace anomaly formulas, we calculate the forward (zero momentum transfer) value of the twist-four gravitational form factor at the next-to-next-to-leading-order (NNLO) accuracy. We present quantitative results for nucleon as well as for pion, leading to a model-independent determination of the forward value of . We find quite different pattern in the obtained results between the nucleon and the pion. In particular, for the nucleon, the present information from experiment and lattice QCD on the nonperturbative matrix elements arising in our NNLO formula allows us to obtain a prediction of the forward value of at the accuracy of a few percent level.

    hep-phnucl-thJHEP(2023)·20 citations
  22. 22*

    Searching for feebly interacting dark matter at colliders and beam-dump experiments

    Sam Junius🇧🇪

    Despite the compelling amount of evidence for the existence of dark matter, its exact nature is still one of the main open questions in modern physics. A great experimental effort has been performed to probe one of the most popular dark matter candidates, the Weakly Interacting Massive Particle or WIMP, however, there has not been any conclusive detection yet. Hence, these searches place strong constraints on the WIMP paradigm. The community has therefore started to consider alternatives who are able to evade the strong experimental constraints. Such a candidate that has gained a lot of attention in the recent years is the Feebly Interacting Massive Particle or FIMP. Unlike the WIMP, the FIMP has very feeble interactions. It is therefore unable to reach a state of equilibrium which is needed to be produced trough freeze-out. Despite these feeble interactions, there is still a variety of mechanisms able to produce the observed amount of dark matter in our universe. In this work, a selection of these mechanisms, such as freeze-in or conversion driven freeze-out, are discussed in detail. Since these FIMPs are so feebly interacting with standard model particles, it is difficult to probe these particles through conventional direct and indirect detection searches. In contrast, the feeble couplings give rise to long-lived particles coupling to the DM, which can hence be smoking gun signatures for FIMPs. This thesis will therefore focus on searches for long-lived particles, both at hadron colliders and beam-dump experiments. In order to do so, a classification of FIMP models has been put forward within the context of this PhD, in which potential production mechanisms are identified in order to define a viable parameter space. Within this framework, both existing and potential future searches for long-lived particles are discussed and applied to a subset of the proposed classification.

    hep-ph2 citations
  23. 23*

    Generic tests of CP-violation in high- multi-lepton signals at the LHC and beyond

    Yoav Afik🇨🇭 · Shaouly Bar-Shalom🇮🇱 · Kuntal Pal🇺🇸 · Amarjit Soni🇺🇸 · Jose Wudka🇺🇸

    We introduce a modification to the standard expression for tree-level CP-violation in scattering processes at the LHC, which is important when the initial state in not self-conjugate. Based on that, we propose a generic and model-independent search strategy for probing tree-level CP-violation in inclusive multi-lepton signals. We then use TeV-scale 4-fermion operators of the form and with complex Wilson coefficients as an illustrative example and show that it may generate CP asymmetries that should be accessible at the LHC with an integrated luminosity of fb.

    hep-phhep-exPRL(2023)·6 citations
  24. 24*

    Leptogenesis via Inflaton Mass Terms in Non-Minimally Coupled Inflation

    Kit Lloyd-Stubbs🇬🇧 · John McDonald🇬🇧

    We consider a model of baryogenesis based on adding lepton number-violating quadratic mass terms to the inflaton potential of a non-minimally coupled inflation model. The -violating mass terms generate a lepton asymmetry in a complex inflaton field via the mass term Affleck-Dine mechanism, which is transferred to the Standard Model (SM) sector when the inflaton decays to right-handed (RH) neutrinos. The model is minimal in that it requires only the SM sector, RH neutrinos, and a non-minimally coupled inflaton sector. We find that baryon isocurvature fluctuations can be observable in metric inflation but are negligible in Palatini inflation. The model is compatible with reheating temperatures that may be detectable in the observable primordial gravitational waves predicted by metric inflation.

    hep-phastro-ph.COgr-qchep-thPRD(2023)·4 citations
  25. 25*

    Fingerprinting CP-violating New Physics with

    Robert Fleischer🇳🇱 · Eleftheria Malami🇳🇱 · Anders Rehult🇳🇱 · K. Keri Vos🇳🇱

    The system is particularly interesting to explore physics beyond the Standard Model. Such effects could provide new sources of CP violation, thereby giving rise to Wilson coefficients which could not only be real, as assumed in most analyses, but also be complex. We propose a new strategy to extract the complex , from the data, utilising the complementarity of direct CP violation in and mixing-induced CP violation arising - in addition to direct CP violation - in , as well as the differential rate in appropriate bins. The long-distance effects, which play a key role to generate the direct CP asymmetries, cannot be reliably calculated due to their non-perturbative nature. In order to describe them, we apply a model by the LHCb Collaboration employing experimental data. Assuming specific scenarios, we demonstrate the fingerprinting of CP-violating New Physics and the distinction between ambiguities in the model of the long-distance contributions. Finally, New Physics could couple differently to muons and electrons, as probed through the lepton flavour universality ratio . We discuss these effects in the presence of CP violation and present a new way to measure the direct CP asymmetries of the channels.

    hep-phhep-exJHEP(2023)·30 citations
  26. 26*

    Kaon physics overview

    Jason Aebischer🇨🇭

    The present status of Kaon physics is summarized from a theory point of view. Focus is laid on , as well as on rare Kaon decays, where progress has been made for instance in the case of and . Furthermore, several New Physics scenarios are discussed in the context of rare Kaon decays and other Kaon observables.

    hep-phhep-exhep-latJ.Phys.Conf.Ser.(2023)·2 citations
  27. 27*

    Single-step first order phase transition and gravitational waves in a SIMP dark matter scenario

    Nabarun Chakrabarty🇮🇳 · Himadri Roy🇮🇳 · Tripurari Srivastava🇮🇳

    We investigate the non-zero temperature dynamics of a sub-GeV dark matter scenario freezing-out via self-interactions. As a prototype, we take up the case of a scalar dark matter species undergoing number changing annihilations catalysed by another scalar. We study the shape of the thermal potential of this scenario in a parameter region accounting for the observed relic abundance. An analysis reveals the possibility of a first order phase transition with bubble nucleation occurring at sub-GeV temperatures. This finding can be correlated with the typical sub-GeV masses in the framework. The gravitational wave spectra associated with such a phase transition is subsequently computed.

    hep-phNPB(2024)·9 citations
  28. 28*

    Resolving Boson Mass Shift and CKM Unitarity Violation in Left-Right Symmetric Models with Universal Seesaw

    K.S. Babu🇺🇸 · Ritu Dcruz🇺🇸

    We explore the possibility of resolving simultaneously the -boson mass shift reported by the CDF collaboration and the apparent deviation from unitarity in the first row of the CKM mixing matrix in a class of left-right symmetric models. The fermion masses are generated in these models through a universal seesaw mechanism, utilizing vector-like partners of the usual fermions. We find a unique solution to the two anomalies where the mixing of the down quark with a vector-like quark (VLQ) resolves the CKM unitarity puzzle, and the mixing of the top quark with a VLQ partner explains the boson mass shift. The validity of this setup is tested against the stability of the Higgs potential up to higher energies. We find upper bounds of TeV on the masses of the down-type VLQ, the top-partner VLQ, and a neutral scalar associated with gauge symmetry breaking, respectively. This class of models can solve the strong CP problem via parity symmetry without the need for an axion.

    hep-phhep-exPRD(2023)·20 citations
  29. 29*

    Inspection of the detection cross section dependence of the Gallium Anomaly

    C. Giunti🇮🇹 · Y.F. Li🇨🇳 · C.A. Ternes🇮🇹 · Z. Xin🇨🇳

    We discuss in detail the dependence of the Gallium Anomaly on the detection cross section. We provide updated values of the size of the Gallium Anomaly and find that its significance is larger than about for all the detection cross section models. We discuss the dependence of the Gallium Anomaly on the assumed value of the half life of , which determines the cross sections of the transitions from the ground state of to the ground state of . We show that a value of the half life which is larger than the standard one can reduce or even solve the Gallium Anomaly. Considering the short-baseline neutrino oscillation interpretation of the Gallium Anomaly, we show that a value of the half life which is larger than the standard one can reduce the tension with the results of other experiments. Since the standard value of the half life was measured in 1985, we advocate the importance of new measurements with modern technique and apparatus for a better assessment of the Gallium Anomaly.

    hep-phhep-exnucl-exnucl-thPLB(2023)·27 citations
  30. 30*

    Anisotropic fluctuations of angular momentum of heavy quarks in the Glasma

    Pooja🇮🇳 · Santosh K. Das🇮🇳 · Vincenzo Greco🇮🇹 · Marco Ruggieri🇮🇹

    We study the evolution of the angular momentum of the heavy quarks in the very early stage of high energy nuclear collisions, in which the background is made of evolving Glasma fields. Given the novelty of the problem, we limit ourselves to the use of toy heavy quarks with a large, unphysical mass, in order to implement the kinetic equations for the angular momentum in the non-relativistic limit. We find that as a consequence of the anisotropy of the background fields, angular momentum fluctuations are also anisotropic: we understand this in simple terms relating the fluctuations of the angular momentum, , to those of linear momentum. While orbital angular momentum diffuses and develops substantial fluctuations and anisotropies, the spin does not. Hence, we can identify the fluctuations of with those of the total angular momentum . Therefore, our study suggests that the total angular momentum of the heavy quarks in the early stage of high energy nuclear collisions will present anisotropic fluctuations.

    hep-phhep-latnucl-thEur.Phys.J.Plus(2023)·18 citations
  31. 31*

    Thermal Production of Massless Dark Photons

    Alberto Salvio🇮🇹

    A dark photon is predicted by several well-motivated Standard Model extensions and UV completions. Here the most general effective field theory up to dimension-six operators describing the interactions of a massless dark photon with all Standard Model particles is considered. This captures the predictions of a generic model featuring this type of vector boson at sufficiently low energies. In such framework the thermal production rate of dark photons is computed at leading order, including the contributions of all SM particles. The corresponding cosmological yield of the dark photon and its contribution to the effective number of neutrinos are also calculated. These predictions satisfy the current observational bounds and will be tested by future measurements.

    hep-phastro-ph.COhep-thJCAP(2023)·3 citations
  32. 32*

    Listening for Dark Photon Radio from the Galactic Centre

    Edward Hardy🇬🇧 · Ningqiang Song🇬🇧

    Dark photon dark matter that has a kinetic mixing with the Standard Model photon can resonantly convert in environments where its mass coincides with the plasma frequency. We show that such conversion in neutron stars or accreting white dwarfs in the galactic centre can lead to detectable radio signals. Depending on the dark matter spatial distribution, future radio telescopes could be sensitive to values of the kinetic mixing parameter that exceed current constraints by orders of magnitude for eV.

    hep-phastro-ph.COPRD(2023)·17 citations
  33. 33*

    A systematic formulation of chiral anomalous magnetohydrodynamics

    Michael J. Landry🇺🇸 · Hong Liu🇺🇸

    We present a new way of deriving effective theories of dynamical electromagnetic fields in general media. It can be used to give a systematic formulation of magnetohydrodynamics (MHD) with strong magnetic fields, including systems with chiral matter and Adler-Bell-Jackiw (ABJ) anomaly. We work in the regime in which velocity and temperature fluctuations can be neglected. The resulting chiral anomalous MHD incorporates and generalizes the chiral magnetic effect, the chiral separation effect, the chiral electric separation effect, as well as recently derived strong-field MHD, all in a single coherent framework. At linearized level, the theory predicts that the chiral magnetic wave does not survive dynamical electromagnetic fields. A different chiral wave, to which we refer as the chiral magnetic electric separation wave, emerges as a result of dynamical versions of the chiral electric separation effect and the chiral magnetic effect. We predict its wave velocity. We also introduce a simple, but solvable nonlinear model to explore the fate of the chiral instability.

    hep-phastro-ph.HEcond-mat.mes-hallhep-th+1JHEP(2026)·18 citations
  34. 34*

    The domain of a cannibal dark matter

    Marco Hufnagel🇧🇪 · Michel H. G. Tytgat🇧🇪

    We consider a scenario in which the dark matter is alone in a hidden sector and consists of a real scalar particle with a manifest or spontaneously broken symmetry, at a temperature which differs from the one of the visible sector, . While similar models with general couplings have already been studied in the literature, the special case of a model with spontaneous symmetry breaking constitutes a non-trivial limit of these results, since it features vanishing tree-level amplitudes for the processes with at threshold, thus making the cross-section governing dark-matter freeze-out velocity suppressed. We carefully determine the thermally averaged dark-matter annihilation cross-section in this scenario, including the possible effects of one-loop corrections and Bose-Einstein statistics, while also reporting our results in the domain of thermal dark matter candidates, vs. with being the hidden-sector temperature at decoupling. We show that for fixed quartic coupling, due to entropy conservation, the thermal candidates lie along a curve with anomalous scaling . Furthermore, we demonstrate that this scaling is valid for a broad class of cannibal DM scenarios, with or without symmetry breaking. In addition, we also discuss the relevant cosmological and astrophysical constraints.

    hep-phJCAP(2023)·13 citations
  35. 35*

    Lepton-flavour-violating tau decays from triality

    Innes Bigaran🇺🇸 · Xiao-Gang He🇨🇳 · Michael A. Schmidt🇦🇺 · German Valencia🇦🇺 · Raymond Volkas🇦🇺

    Motivated by flavour symmetry models, we construct theories based on a low-energy limit featuring lepton flavour triality that have the flavour-violating decays and as the main phenomenological signatures of physics beyond the standard model. These decay modes are expected to be probed in the near future with increased sensitivity by the Belle II experiment at the SuperKEKB collider. The simple standard model extensions featured have doubly-charged scalars as the mediators of the above decay processes. The phenomenology of these extensions is studied here in detail.

    hep-phPRD(2023)·16 citations
  36. 36*

    Updated constraints on axion-like particles from temporal information in supernova SN1987A gamma-ray data

    Sebastian Hoof🇩🇪 · Lena Schulz🇩🇪

    We revise gamma-ray limits on axion-like particles (ALPs) emitted from supernova SN1987A based on Solar Maximum Mission data. We improve and simplify the computation of the expected gamma-ray signal from ALP decays, while also extending it to non-instantaneous ALP emission. For the first time we make use of the temporal information in the data to update the associated ALP-photon coupling limits. For ALP decays, our updated likelihood only mildly affects the limit compared to previous works due to the absorption of gamma rays close to SN1987A. However, for ALP conversions in the Galactic magnetic field, temporal information improves the limit on the ALP-photon coupling by a factor of 1.4.

    hep-phastro-ph.HEJCAP(2023)·118 citations
  37. 37*

    First-order phase transitions in Twin Higgs models

    Marcin Badziak🇵🇱 · Ignacy Nałęcz🇵🇱

    We revisit phase transitions in Twin Higgs (TH) models. We show that strong first-order phase transitions (FOPTs) can occur provided that appropriate source of symmetry breaking between the twin and Standard Model (SM) sectors is present. We found FOPTs in two classes of models. First: with hard breaking in the scalar potential allowing for FOPT. Second: with broken by enhanced Yukawa couplings of twin leptons. We also considered supersymmetric UV completion of the second scenario with light sleptons. The signal of gravitational waves produced during these phase transitions is typically small but can be close to the reach of AEDGE and Einstein Telescope in the case of the FOPT induced by light twin sleptons. Our results open a way to generate SM baryon asymmetry in TH models.

    hep-phastro-ph.COJHEP(2023)·14 citations
  38. 38*

    Axionic Strings, Domain Walls and Baryons

    Francesco Bigazzi🇮🇹 · Aldo L. Cotrone🇮🇹 · Andrea Olzi🇮🇹

    When axionic strings carry a global charge, domain walls bounded by such strings may not be allowed to decay completely. This happens in particular in some models where a composite axion-like particle is the pseudo-Nambu-Goldstone boson of chiral symmetry breaking of an extra quark flavor. In this case the global symmetry is the extra flavor baryonic symmetry. The corresponding axionic domain walls can carry a baryonic charge: they represent the low energy description of the baryons made by the extra quark flavor. Basic properties of these particles, such as spin, mass scale, size are discussed. The corresponding charged axionic strings are explicitly constructed and studied in a specific calculable model.

    hep-phhep-thPRD(2023)·6 citations
  39. 39*

    Constraining dark matter interactions mediated by a light scalar with white dwarfs

    Maura E. Ramirez-Quezada🇯🇵

    Observations of white dwarfs in dark matter-rich environments can provide strong limits on the strength of dark matter interactions. Here we apply the recently improved formalism of the dark matter capture rate in white dwarfs to a general model in which dark matter interacts with the white dwarf ion components via a light scalar mediator. We compute the dark matter capture rate in the optically thin limit in a cold white dwarf from the globular cluster Messier. We then estimate the threshold cross-section, which significantly varies as a function of the light scalar mediator mass in the range of and becomes constant when . We also show that the bounds obtained from the dark matter capture in a white dwarf from the globular cluster Messier 4 are complementary to direct detection experiments and particularly strong in the sub-GeV regime.

    hep-phPRD(2023)·10 citations
  40. 40*

    Probing Left-handed Heavy Neutral Leptons on the Massive Vector Doublet Model

    Paulo Areyuna C🇨🇱

    In the first part of this thesis, we consider an extension to the Standard Model composed by a Massive Vector Doublet under SU(2)L and a Left-handed Heavy Neutral Lepton. We study the production of these exotic leptons with a Same Flavor Opposite Sign standard lepton pair, and jets. We establish limits on the parameter space considering previous searches in this final state. After the limit definition, we study a modification on the event selection criteria in order to increase the possibility of probing these new particles at the Large Hadron Collider. Finally, we perform a parameter scan considering the new lepton as a dark matter candidate, identifying relevant regions on the parameter space for future studies.

    hep-ph0 citations
  41. 41*

    A lattice QCD study of the transition

    Luka Leskovec🇸🇮 · Stefan Meinel🇺🇸 · Marcus Petschlies🇩🇪 · John Negele🇺🇸 · Srijit Paul🇬🇧 · Andrew Pochinsky🇺🇸 · Gumaro Rendon🇺🇸

    is the smallest and least known of all CKM matrix elements; the community currently determines its magnitude primarily through the exclusive process . Here we present our progress toward a lattice QCD determination of the matrix element from a novel transition -- process, where the system is in a wave and scattering features the resonance as an enhancement. We perform our calculation on isotropic clover fermions on a lattice of fm and a pion mass of MeV; for the -quark we use the anisotropic clover action. After a brief overview of the theoretical framework, we will discuss some preliminary results.

    hep-lathep-phPoS(2023)·16 citations
  42. 42*

    Discrete symmetry transformations on non-abelian gauge fields

    Amitabha Lahiri🇮🇳 · Palash B. Pal🇮🇳 · Marina Shokova🇰🇿

    All gauge bosons of a non-abelian gauge theory do not transform the same way under the discrete transformations of time-reversal and charge-conjugation. Moreover, the transformations rules depend on how the generators are chosen. We show how well-defined rules pertain only to specific choices of generators, and then show how unified rules can be constructed, using matrix forms of the gauge bosons, which are completely independent of the choice of generators.

    hep-thhep-phPhys.Educator(2023)·1 citation
  43. 43*

    Bananas of equal mass: any loop, any order in the dimensional regularisation parameter

    Sebastian Pögel🇩🇪 · Xing Wang🇩🇪 · Stefan Weinzierl🇩🇪

    We describe a systematic approach to cast the differential equation for the -loop equal mass banana integral into an -factorised form. With the known boundary value at a specific point we obtain systematically the term of order in the expansion in the dimensional regularisation parameter for any loop . The approach is based on properties of Calabi-Yau operators, and in particular on self-duality.

    hep-thhep-phmath-phmath.MPJHEP(2023)·83 citations
  44. 44*

    Effective Field Theory and Applications: Weak Field Observables from Scattering Amplitudes in Quantum Field Theory

    N. Emil J. Bjerrum-Bohr🇩🇰 · Ludovic Planté🇩🇰 · Pierre Vanhove🇫🇷

    In this chapter, we will review the field-theoretic treatment of General Relativity based on an effective field theory extension of the Einstein-Hilbert action. This pragmatic route to low-energy quantum effects in gravity critically underpins miscellaneous investigations of phenomenological and quantum extensions of General Relativity. We discuss how it allows quantum field theory to be a theoretical laboratory for testing Einstein's theory of gravity and demonstrate the current state of the art of an efficient and practical scheme for evaluating the classical components of perturbative weak-field scattering amplitudes until the fourth post-Minkowskian order. Such results complement numerical predictions in Einstein's theory of gravity.

    hep-thgr-qchep-ph35 citations
  45. 45*

    Apparent Fine Tunings for Field Theories with Broken Space-Time Symmetries

    Alberto Nicolis🇺🇸 · Ira Z. Rothstein🇺🇸

    We exhibit a class of effective field theories that have hierarchically small Wilson coefficients for operators that are not protected by symmetries but are not finely tuned. These theories possess bounded target spaces and vacua that break space-time symmetries. We give a physical interpretation of these theories as generalized solids with open boundary conditions. We show that these theories realize unusual RG flows where higher dimensional (seemingly irrelevant) operators become relevant even at weak coupling. Finally, we present an example of a field theory whose vacuum energy relaxes to a hierarchically small value compared to the UV cut-off.

    hep-thhep-phSciPost Phys.(2024)·6 citations
  46. 46*

    Equation of state and speed of sound of (2+1)-flavor QCD in strangeness-neutral matter at non-vanishing net baryon-number density

    D. Bollweg🇺🇸 · D. A. Clarke🇺🇸 · J. Goswami🇯🇵 · O. Kaczmarek🇩🇪 · F. Karsch🇩🇪 · Swagato Mukherjee🇺🇸 · P. Petreczky🇺🇸 · C. Schmidt🇩🇪 · Sipaz Sharma🇩🇪

    We update results on the QCD equation of state in (2+1)-flavor QCD with non-zero conserved charge chemical potentials obtained from an eighth-order Taylor series. We present results for basic bulk thermodynamic observables of strangeness-neutral strong-interaction matter, i.e. pressure, number densities, energy and entropy density, and resum Taylor series results using Padé approximants. Furthermore, we calculate the speed of sound as well as the adiabatic compression factor of strangeness-neutral matter on lines of constant entropy per net baryon number. We show that the equation of state () is already well described by the -order Taylor series in almost the entire range of temperatures accessible with the beam energy scan in collider mode at the Relativistic Heavy Ion Collider.

    hep-lathep-phnucl-thPRD(2023)·75 citations
  47. 47*

    Scrutinizing Early Dark Energy models through CMB lensing

    Balakrishna S. Haridasu🇮🇹 · Hasti Khoraminezhad · Matteo Viel🇮🇹

    We investigate early dark energy models in the context of the lensing anomaly by considering two different Cosmic Microwave Background (CMB) datasets: a complete Planck, and a second one primarily based on SPTPol and Planck temperature (). We contrast the effects of allowing the phenomenological lensing amplitude () to be different from unity. We find that the fraction of early dark energy, while not immediately affected by the lensing anomaly, can induce mild deviations, through correlations with the parameters and . {We extend the analysis also by marginalizing the Newtonian lensing potential, finding a deviation, when allowing for an amplitude rescaling and scale-dependence. Modeling the rescaling of the theory lensing potential and the acoustic smoothing of the CMB spectra, we find that only to a moderate level the anomaly can be addressed by modifying the lensing signal itself and that an additional at significance should be addressed by pre-recombination physics. Finally, we also comment on the lensing anomaly in a non-flat () scenario, finding that the late-time flatness of the universe is robust and not correlated with the additional smoothing in the CMB spectra.

    astro-ph.COhep-ph10 citations
  48. 49*

    The Compton amplitude and nucleon structure functions

    K. Utku Can🇦🇺

    Structure functions are the essential objects for understanding the deep inelastic scattering processes, providing valuable insight into the partonic structure of hadrons. A direct calculation of the Compton amplitude provides a complementary way to accessing the structure functions, circumventing the operator mixing and renormalisation issues of the standard operator product expansion approach. We describe the connection between the Compton amplitude and the structure functions, and describe a Feynman-Hellmann approach to calculate the amplitude directly. As an application, we extract the moments of transverse and longitudinal proton structure functions and study the power corrections.

    hep-lathep-phPoS(2023)·7 citations
  49. 50*

    A Powerful New Energy Density Functional

    Anthony W Thomas🇦🇺 · Pierre A M Guichon🇫🇷 · Jesper Leong🇦🇺 · K L Martinez-Paglinawan · J R Stone🇬🇧

    We describe the most recent energy density functional derived within the quark meson coupling model. Although fit to the binding energies and charge radii of just seventy magic nuclei, the accuracy with which it reproduces nuclear properties across the entire periodic table is outstanding. As well as outlining a number of those results, we present an argument explaining why having a physically motivated model with a small number of parameters is especially desirable as one seeks to make predictions in new regions of N and Z. As an example we show the predictions for known super-heavy nuclei that were not included in the fit.

    nucl-thhep-phnucl-exJ.Phys.Conf.Ser.(2023)·2 citations
  50. 51*

    Time windows of the muon HVP from twisted-mass lattice QCD

    C. Alexandrou · S. Bacchio · P. Dimopoulos · J. Finkenrath · R. Frezzotti · G. Gagliardi · M. Garofalo · K. Hadjiyiannakou · B. Kostrzewa · K. Jansen · V. Lubicz · M. Petschlies and 4 other authors

    We present a lattice determination of the leading-order hadronic vacuum polarization (HVP) contribution to the muon anomalous magnetic moment, , in the so-called short and intermediate time-distance windows, and . We employ gauge ensembles produced by the Extended Twisted Mass Collaboration (ETMC) with flavours of Wilson-clover twisted-mass quarks with masses of all the dynamical quark flavours tuned close to their physical values. The simulations are carried out at three values of the lattice spacing equal to and fm with spatial lattice sizes up to ~fm. For the short distance window we obtain , in agreement with the dispersive determination based on experimental data. For the intermediate window we get instead , which is consistent with recent determinations by other lattice collaborations, but disagrees with the dispersive determination at the level of .

    hep-lathep-phPoS(2023)·3 citations
  51. 52*

    The ice cone family and iterated integrals for Calabi-Yau varieties

    Claude Duhr🇩🇪 · Albrecht Klemm🇩🇪 · Christoph Nega🇩🇪 · Lorenzo Tancredi🇩🇪

    We present for the first time fully analytic results for multi-loop equal-mass ice cone graphs in two dimensions. By analysing the leading singularities of these integrals, we find that the maximal cuts in two dimensions can be organised into two copies of the same periods that describe the Calabi-Yau varieties for the equal-mass banana integrals. We obtain a conjectural basis of master integrals at an arbitrary number of loops, and we solve the system of differential equations satisfied by the master integrals in terms of the same class of iterated integrals that have appeared earlier in the context of equal-mass banana integrals. We then go on and show that, when expressed in terms of the canonical coordinate on the moduli space, our results can naturally be written as iterated integrals involving the geometrical invariants of the Calabi-Yau varieties. Our results indicate how the concept of pure functions and transcendental weight can be extended to the case of Calabi-Yau varieties. Finally, we also obtain a novel representation of the periods of the Calabi-Yau varieties in terms of the same class of iterated integrals, and we show that the well-known quadratic relations among the periods reduce to simple shuffle relations among these iterated integrals.

    hep-thhep-phmath-phmath.MPJHEP(2023)·60 citations
  52. 53*

    Integrability for Feynman Integrals

    Florian Loebbert🇩🇪

    We give a brief overview of the Yangian symmetry of Feynman integrals. After a short introduction to the Yangian and integrability, we motivate the emergence of integrable structures for Feynman integrals via the fishnet limit of AdS/CFT. We discuss the resulting Yangian differential equations for massless fishnets in four dimensions as well as generalizations to massive propagators and generic dimensions. We also comment on the relation to momentum space conformal symmetry and on examples in dimensional regularization. Finally we sketch the recent application to fishnet integrals in two spacetime dimensions and the curious identification of Yangian invariants with period integrals of Calabi-Yau geometries.

    hep-thhep-phmath-phmath.MPSciPost Phys.Proc.(2023)·23 citations
  53. 54*

    Three-family supersymmetric Pati-Salam models with symplectic groups from intersecting D6-branes

    Adeel Mansha🇨🇳 · Tianjun Li🇨🇳 · Mudassar Sabir🇨🇳 · Lina Wu🇨🇳

    We construct new three-family supersymmetric Pati-Salam models from intersecting D6-branes with original gauge group on a Type IIA orientifold. We find that replacing a with a group severely restricts the number of three-generation supersymmetric models such that there are only five inequivalent models. Exchanging the left and right sectors, we obtain five dual models with gauge group . These ten models have different gauge coupling relations at string scale. The highest wrapping number is 4, and one of the models contains no filler O6-planes. Moreover, we discuss in detail the particle spectra, the composite particles through strong coupling dynamics, and the exotic particle decouplings. Also, we study how to realize the string-scale gauge coupling relations in some models.

    hep-thhep-phEPJC(2024)·9 citations
  54. 55*

    Monopole and instanton effects on connected and disconnected correlations for scalar density

    Masayasu Hasegawa🇷🇺

    This study investigates the effects on the connected and disconnected correlations for the scalar density that are induced by created monopoles and instantons in the QCD vacuum. To reveal the effects, we add a monopole and anti-monopole pair in the gauge field configurations in \textit{SU}(3) by applying the monopole creation operator to the vacuum. We vary the magnetic charges of the monopole and anti-monopole and increase the number of monopoles and anti-monopoles in the configurations. The Dirac operator of overlap fermions preserves the exact chiral symmetry in lattice gauge theory and exact zero-modes exist in its spectrum. The eigenvalues and eigenvectors of the overlap Dirac operator have been calculated using these configurations, and the numbers of instantons and anti-instantons which are created by these additional monopoles and anti-monopoles have been estimated from the numbers of topological charges in our previous studies. In this study, we demonstrate the preliminary results that instantons and monopoles influence the masses that are evaluated from the connected and disconnected correlation functions for the scalar density using low-lying eigenvalues and eigenvectors of the overlap Dirac operator.

    hep-lathep-phnucl-thPhys.Atom.Nucl.(2023)·0 citations
  55. 56*

    Using Pulsar Parameter Drifts to Detect Sub-Nanohertz Gravitational Waves

    William DeRocco🇺🇸 · Jeff A. Dror🇺🇸

    Gravitational waves with frequencies below 1~nHz are notoriously difficult to detect. With periods exceeding current experimental lifetimes, they induce slow drifts in observables rather than periodic correlations. Observables with well-known intrinsic contributions provide a means to probe this regime. In this work, we demonstrate the viability of using observed pulsar timing parameters to discover such "ultralow" frequency gravitational waves, presenting two complementary observables for which the systematic shift induced by ultralow-frequency gravitational waves can be extracted. Using existing data for these parameters, we search the ultralow frequency regime for continuous-wave signals, finding a sensitivity near the expected prediction from inspirals of supermassive black holes. We do not see an excess in the data, setting a limit on the strain of at with a sensitivity dropping approximately quadratically with frequency until . Our search method opens a new frequency range for gravitational wave detection and has profound implications for astrophysics, cosmology, and particle physics.

    astro-ph.HEastro-ph.IMgr-qchep-phPRL(2024)·20 citations
  56. 57*

    Exact quantum conformal symmetry, its spontaneous breakdown, and gravitational Weyl anomaly

    Mikail Shaposhnikov🇨🇭 · Anna Tokareva🇬🇧

    The classical Lagrangian of the Standard Model enjoys the symmetry of the full conformal group if the mass of the Higgs boson is put to zero. This is a hint that conformal symmetry may play a fundamental role in the ultimate theory describing Nature. The origin of scales, such as the Higgs vacuum expectation value (vev), may result from the spontaneous breakdown of the conformal symmetry by the dilaton field. In this work, we study whether this classical setup can be implemented in quantum theory and be phenomenologically viable by presenting an explicit construction where the exact conformal symmetry can be preserved and is anomaly free while being spontaneously broken. Not only the Higgs mass but also the genuine quantum scales like the QCD confinement radius are generated by the dilaton vev. We also discuss the extension of these ideas to the theories with dynamical gravity and show that the only finite subgroup of the local Weyl transformations which is anomaly free corresponds to the global scale symmetry. This means that the conformal invariance of the flat space theory is explicitly broken down to the scale symmetry by gravitational effects related to the Weyl anomaly.

    hep-thhep-phPRD(2023)·24 citations
  57. 58*

    Dark photon superradiance: Electrodynamics and multimessenger signals

    Nils Siemonsen🇨🇦 · Cristina Mondino🇨🇦 · Daniel Egana-Ugrinovic🇨🇦 · Junwu Huang🇨🇦 · Masha Baryakhtar🇺🇸 · William E. East🇨🇦

    We study the electrodynamics of a kinetically mixed dark photon cloud that forms through superradiance around a spinning black hole, and design strategies to search for the resulting multimessenger signals. A dark photon superradiance cloud sources a rotating dark electromagnetic field which, through kinetic mixing, induces a rotating visible electromagnetic field. Standard model charged particles entering this field initiate a transient phase of particle production that populates a plasma inside the cloud and leads to a system which shares qualitative features with a pulsar magnetosphere. We study the electrodynamics of the dark photon cloud with resistive magnetohydrodynamics methods applicable to highly magnetized plasma, adapting techniques from simulations of pulsar magnetospheres. We identify turbulent magnetic field reconnection as the main source of dissipation and electromagnetic emission, and compute the peak luminosity from clouds around solar-mass black holes to be as large as erg/s for open dark photon parameter space. The emission is expected to have a significant X-ray component and is potentially periodic, with period set by the dark photon mass. The luminosity is comparable to the brightest X-ray sources in the Universe, allowing for searches at distances of up to hundreds of Mpc with existing telescopes. We discuss observational strategies, including targeted electromagnetic follow-ups of solar-mass black hole mergers and targeted continuous gravitational wave searches of anomalous pulsars.

    astro-ph.HEgr-qchep-phPRD(2023)·79 citations
  58. 59*

    Towards an effective action for chiral magnetohydrodynamics

    Arpit Das🇬🇧 · Nabil Iqbal🇬🇧 · Napat Poovuttikul🇹🇭

    We consider chiral magnetohydrodynamics, i.e. a finite-temperature system where an axial current is not conserved due to an Adler-Bell-Jackiw anomaly saturated by the dynamical operator . We express this anomaly in terms of the 1-form symmetry associated with magnetic flux conservation and study its realization at finite temperature. We present Euclidean generating functional and dissipative action approaches to the dynamics and reproduce some aspects of chiral MHD phenomenology from an effective theory viewpoint, including the chiral separation and magnetic effects. We also discuss the construction of non-invertible axial symmetry defect operators in our formalism.

    hep-thastro-ph.HEhep-phnucl-th+122 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.