PaperPanorama

HEP Phenomenology·hep-ph

Fri·Nov 17, 2023

38 papers29 primary·9 cross-listed·reconstructed*

  1. 01*

    Early vs late string networks from a minimal QCD Axion

    Marco Gorghetto🇩🇪 · Edward Hardy🇬🇧 · Horia Nicolaescu🇬🇧 · Alessio Notari🇪🇸 · Michele Redi🇮🇹

    We propose a new regime of minimal QCD axion dark matter that lies between the pre- and post-inflationary scenarios, such that the Peccei-Quinn (PQ) symmetry is restored only on sufficiently large spatial scales. This leads to a novel cosmological evolution, in which strings and domain walls re-enter the horizon and annihilate later than in the ordinary post-inflationary regime, possibly even after the QCD crossover. Such dynamics can occur if the PQ symmetry is restored by inflationary fluctuations, i.e. the Hubble parameter during inflation is larger than the PQ breaking scale , but it is not thermally restored afterwards. Solving the Fokker-Planck equation, we estimate the number of inflationary e-folds required for the PQ symmetry to be, on average, restored. Moreover, we show that, in the large parts of parameter space where the radial mode is displaced from the minimum by de Sitter fluctuations, a string network forms due to the radial mode oscillating over the top of its potential after inflation. In both cases we identify order one ranges in and in the quartic coupling of the PQ potential that lead to the late-string dynamics. In this regime the cosmological dark matter abundance can be reproduced for axion decay constants as low as the astrophysical constraint GeV, corresponding to axion masses up to , and with miniclusters with masses as large as .

    hep-phastro-ph.COhep-thJHEP(2024)·18 citations
  2. 02*

    Coulomb-nuclear interference in elastic proton scattering in the eikonal approach

    M. L. Nekrasov🇷🇺

    We find exact solution in the Cahn eikonal model, which describes Coulomb-nuclear interference in elastic scattering of charged hadrons. The cases of both point-like and extended particles equipped with electromagnetic form factors are considered. According to the solution obtained the Coulomb-nuclear contributions are not exponentiated and cannot be added to the Coulomb phase. At the same time, the -approximation of the amplitude is ambiguous, which makes it unsuitable for data processing.

    hep-phhep-thPLB(2024)·4 citations
  3. 03*

    Three-loop effective potential for softly broken supersymmetry

    Stephen P. Martin🇺🇸

    The effective potential has been previously calculated through three-loop order, in Landau gauge, for a general renormalizable theory using dimensional regularization. However, dimensional regularization is not appropriate for softly broken supersymmetric gauge theories, because it explicitly violates supersymmetry. In this paper, I obtain the three-loop effective potential using a supersymmetric regulator based on dimensional reduction. Checks follow from the vanishing of the effective potential in examples with supersymmetric vacua, and from renormalization scale invariance in examples for which supersymmetry is broken, either spontaneously or explicitly by soft terms. As byproducts, I obtain the three-loop Landau gauge anomalous dimension for the scalar component of a chiral supermultiplet, and the beta function for the field-independent vacuum energy.

    hep-phPRD(2024)·4 citations
  4. 04*

    Super heavy dark matter from inflationary Schwinger production

    Mar Bastero-Gil🇪🇸 · Paulo B. Ferraz🇪🇸 · Lorenzo Ubaldi🇸🇮 · Roberto Vega-Morales🇪🇸

    We consider a simple setup with a dark sector containing dark electrons charged under an abelian gauge symmetry. We show that if the massless dark photon associated to the is produced during inflation in such a way as to form a classical dark electric field, then dark electron-positron pairs are also produced close to the end of inflation via the Schwinger effect even if they are very massive. For large enough dark electric force, dark electrons with masses larger than the Hubble scale can be produced which are non-relativistic at production and throughout their cosmic evolution. They can account for the dark matter abundance today for masses in the range 100 GeV to GeV and up to six orders of magnitude larger than the Hubble scale at the end of inflation where purely gravitational production is exponentially suppressed. We examine the regime where the dark electrons do not thermalize with the dark photons throughout their cosmic history and assume negligible kinetic mixing with the visible so they remain decoupled from the Standard Model thermal bath as well. Thus the final dark matter relic abundance is determined only by the initial inflationary Schwinger production and redshifting after reheating.

    hep-phPRD(2024)·13 citations
  5. 05*

    Top quark flavor changing couplings at a muon collider

    Daniel Ake🇲🇽 · Antonio O. Bouzas🇲🇽 · F. Larios🇲🇽

    There is growing interest in the development of a muon collider that would make it possible to produce lepton collisions at energies of several TeV. Among others, there can be significant contributions to electroweak gauge boson, Higgs boson and top quark physics. In this work we pay attention to the latter, in particular, effective flavor-changing (FC) top-quark interactions. We discuss the flavor changing () production processes that can be a good probe of the dimension-six top quark four-fermion and fermion-boson operators in the SMEFT. We consider all sixteen operators that can generate flavor-changing top quark couplings. After comparing with the current LHC bounds, we find potential limits three or four orders of magnitude stronger for four-fermion operators. Concerning fermion-boson couplings, for the tensor operators and we obtain the highest sensitivity. We also observe that the effective approximation (EWA) does not apply with .

    hep-phAdv.High Energy Phys.(2024)·9 citations
  6. 06*

    Data-driven estimates for light-quark-connected and strange-plus-disconnected hadronic window quantities

    Genessa Benton🇺🇸 · Diogo Boito🇧🇷 · Maarten Golterman🇺🇸 · Alex Keshavarzi🇬🇧 · Kim Maltman🇦🇺 · Santiago Peris🇪🇸

    A number of discrepancies have emerged between lattice computations and data-driven dispersive evaluations of the RBC/UKQCD Intermediate-window-hadronic contribution to the muon anomalous magnetic moment. It is therefore interesting to obtain data-driven estimates for the light-quark-connected and strange-plus-disconnected components of this window quantity, allowing for a more detailed comparison between the lattice and data-driven approaches. The aim of this paper is to provide these estimates, extending the analysis to several other window quantities, including two windows designed to focus on the region in which the two-pion contribution is dominant. Clear discrepancies are observed for all light-quark-connected contributions considered, while good agreement with lattice results is found for strange-plus disconnected contributions to the quantities for which corresponding lattice results exist. The largest of these discrepancies is that for the RBC/UKQCD intermediate window, where, as previously reported, our data-driven result, , is in significant tension with the results of 8 different recent lattice determinations. Our strategy is the same as recently employed in obtaining data-driven estimates for the light-quark-connected and strange-plus-disconnected components of the full leading-order hadronic vacuum polarization contribution to the muon anomalous magnetic moment. Updated versions of those earlier results are also presented, for completeness.

    hep-phhep-latPRD(2024)·16 citations
  7. 07*

    Direct detections of the Axion-like particle Revisited

    Wei Chao🇨🇳 · Jing-Jing Feng🇨🇳 · Ming-Jie Jin🇨🇳

    Axion-like particles (ALPs) are promising dark matter candidates. Their signals in direct detection experiments arise from the well-known inverse Primakoff effect or the inverse Compton scattering of the ALPs with the electron. In this paper, we revisit the direct detection of ALP by carefully considering the interference between the inverse Primakoff amplitude and the inverse Compton amplitude in the scattering process for the first time. It shows that the contribution of the interference term turns to be dominated in the scattering for a large ALP energy. Given the new analytical formula, signals or constraints of ALP couplings in various projected experiments are investigated. Our results show that these experiments may put strong constraints on ALP couplings for relatively heavy ALP. We further study projected constraints on the ALP from the JUNO experiment, which shows competitive constraints on ALP couplings using a ten-year exposure.

    hep-phPRD(2024)·10 citations
  8. 08*

    Production of dileptons in ultra-peripheral heavy ion collisions with two-photon processes

    Gongming Yu · Xinyu Li · Xinghang Zhang · Zhongxia Zhao · Haitao Yang

    We study the photoproduction process of dileptons in heavy ion collision at Relativistic Heavy Ion Collider (RHIC) and Large Hadron Collider (LHC) energys. The equivalent photon approximation, which equates the electromagnetic field of high-energy charged particles to the virtual photon flux, is used to calculate the processes of dileptons production. The numerical results demonstrate that the experimental study of dileptons in ultra-peripheral collisions is feasible at RHIC and LHC energies.

    hep-phAdv.High Energy Phys.(2025)·0 citations
  9. 10*

    Journey through Gauge Theories: From Foundations to New Frontiers

    Lisha🇮🇳 · Suyash Mehta🇮🇳 · Neelu Mahajan🇮🇳

    From the humble beginnings of particle physics to groundbreaking discoveries, the journey of particle physics has revolutionized our understanding of the universe. The progression of particle physics, begin from the discovery of new particles, to gauge symmetries and many successful theories in its journey which help in building up the model that explain the underlying makeup of matter, regulated by fundamental forces led to establishment of Standard Model(SM). The discovery of neutrino oscillations compelled scientists to explore theories that extend beyond the Standard Model, which opened up new frontiers in the field of particle physics. The theories have shifted its paradigm to a single comprehensive theory at the scale of 10^14 GeV. This article explains the journey of particle physics from the basic constituent to the theory of everything.

    hep-ph0 citations
  10. 11*

    Sensitivity to keV-MeV dark matter from cosmic-ray scattering with current and the upcoming ground-based arrays CTA and SWGO

    Igor Reis🇧🇷 · Emmanuel Moulin🇧🇷 · Aion Viana🇫🇷

    A wealth of astrophysical and cosmological observational evidence shows that the matter content of the universe is made of about 85 of non-baryonic dark matter. Huge experimental efforts have been deployed to look for the direct detection of dark matter via their scattering on target nucleons, their production in colliders, and their indirect detection via their annihilation products. Inelastic scattering of high-energy cosmic rays off dark matter particles populating the Milky Way halo would produce secondary gamma rays in the final state from the decay of the neutral pions produced in such interactions, providing a new avenue to probe dark matter properties. We compute here the sensitivity for H.E.S.S.-like observatory, a current-generation ground-based Cherenkov telescopes, to the expected gamma-ray flux from collisions of Galactic cosmic rays and dark matter in the center of the Milky Way. We also derive sensitivity prospects for the upcoming Cherenkov Telescope Array (CTA) and Southern Wide-field Gamma-ray Observatory (SWGO). The expected sensitivity allows us to probe a poorly-constrained range of dark matter masses so far, ranging from keV to sub-GeV, and provide complementary constraints on the dark matter-proton scattering cross section traditionally probed by deep underground direct dark matter experiments.

    hep-phastro-ph.HE0 citations
  11. 12*

    Neutrino nonradiative decay and the diffuse supernova neutrino background

    Pilar Iváñez-Ballesteros🇫🇷 · M. Cristina Volpe🇫🇷

    The diffuse supernova neutrino background (DSNB) is the constant flux of neutrinos and antineutrinos emitted by all past core collapses in the observable Universe. We study the potential to extract information on the neutrino lifetime from the upcoming observation of the DSNB flux. The DSNB flux has a unique sensitivity to neutrino nonradiative decay for ~s/eV. To this end, we integrate, for the first time, astrophysical uncertainties, the contribution from failed supernovae, and a three-neutrino description of neutrino nonradiative decay. We present our predictions for future detection at the running Super-Kamiokande + Gd and the upcoming Hyper-Kamiokande, JUNO, and DUNE experiments. Finally, our results show the importance of identifying the neutrino mass ordering to restrict the possible decay scenarios for the impact of nonradiative neutrino decay on the DSNB.

    hep-phastro-ph.HEastro-ph.SRPoS(2024)·0 citations
  12. 13*

    Scotoseesaw model implied by dark right-handed neutrinos

    Phung Van Dong🇻🇳 · Duong Van Loi🇻🇳

    We find a dark gauge symmetry that transforms nontrivially only for three right-handed neutrinos, . The anomaly cancellation demands that they have a dark charge assigned to , respectively. The dark charge is broken by two units down to a dark parity, i.e. , which stabilizes a dark matter candidate. Interestingly, the model manifestly supplies neutrino masses via joint seesaw and scotogenic mechanisms, called scotoseesaw.

    hep-phPRD(2024)·15 citations
  13. 14*

    Five-Parton Scattering in QCD at Two Loops

    Bakul Agarwal🇩🇪 · Federico Buccioni🇩🇪 · Federica Devoto🇬🇧 · Giulio Gambuti🇬🇧 · Andreas von Manteuffel🇩🇪 · Lorenzo Tancredi🇩🇪

    We compute all helicity amplitudes for the scattering of five partons in two-loop QCD in all the relevant flavor configurations, retaining all contributing color structures. We employ tensor projection to obtain helicity amplitudes in the 't Hooft-Veltman scheme starting from a set of primitive amplitudes. Our analytic results are expressed in terms of massless pentagon functions, and are easy to evaluate numerically. These amplitudes provide important input to investigations of collinear-factorization breaking and to studies of the multi-Regge kinematics regime.

    hep-phhep-thPRD(2024)·61 citations
  14. 15*

    Leptogenesis and dark matter in minimal inverse seesaw using modular symmetry

    Jotin Gogoi🇮🇳 · Lavina Sarma🇮🇳 · Mrinal Kumar Das🇮🇳

    In this paper we have studied neutrino masses and mixings by adding a scalar triplet to the particle content of minimal inverse seesaw. We have realised this extension of minimal inverse seesaw by implementing an isomorphic modular group and a non-abelian discrete symmetry group . We have also used symmetry group to restrain certain interaction terms in the lagrangian of the model. We have studied baryon asymmetry of the universe, neutrinoless double-beta decay and dark matter in our work. In order to check the consistency of our model with various experimental constraints, we have therefore calculated effective mass, relic density and baryogenesis via leptogenesis. Interestingly, we have found our model quite compatible with the experimental bounds and is also successful in producing the neutrino masses and mixings in the 3 range.

    hep-phEPJC(2024)·13 citations
  15. 17*

    Improving ResBos for the precision needs of the LHC

    Joshua Isaacson🇺🇸 · Yao Fu🇨🇳 · C.-P. Yuan🇺🇸

    The resummation calculation (ResBos) is a widely used tool for the simulation of single vector boson production at colliders. In this work, we develop a significant improvement over the ResBos code by increasing the accuracy from NNLL+NLO to NLL+NNLO and release the ResBos v2.0 code. Furthermore, we propose a new non-perturbative function that includes information about the rapidity of the system (IFY). The IFY functional form was fitted to data from fixed target experiments, the Tevatron, and the LHC. We find that the non-perturbative function has mild rapidity dependence based on the results of the fit. Finally, we investigate the effects that this increased precision has on the measurement of the boson by CDF and impacts on future LHC measurements.

    hep-phhep-exPRD(2024)·35 citations
  16. 18*

    Radiative Corrections to Aid the Direct Detection of the Higgsino-like Neutralino Dark Matter: Spin-Independent Interactions

    Subhadip Bisal🇮🇳 · Arindam Chatterjee🇮🇳 · Debottam Das🇮🇳 · Syed Adil Pasha🇮🇳

    The lightest neutralino () is a good Dark Matter (DM) candidate in the R-parity conserving Minimal Supersymmetric Standard Model (MSSM). In this work, we consider the light higgsino-like neutralino as the Lightest Stable Particle (LSP), thanks to rather small higgsino mass parameter . We then estimate the prominent radiative corrections to the neutralino-neutralino-Higgs boson vertices. We show that for higgsino-like , these corrections can significantly influence the spin-independent direct detection cross-section, even contributing close to 100\% in certain regions of the parameter space. These corrections, therefore, play an important role in deducing constraints on the mass of the higgsino-like lightest neutralino DM, and thus the parameter.

    hep-phPRD(2024)·17 citations
  17. 19*

    Confronting electroweak MSSM through one-loop renormalized neutralino-Higgs interactions for dark matter direct detection and muon

    Subhadip Bisal🇮🇳 · Arindam Chatterjee🇮🇳 · Debottam Das🇮🇳 · Syed Adil Pasha🇮🇳

    We compute the next-to-leading order (NLO) corrections to the vertices where a pair of the lightest neutralino couples to CP-even (light or heavy) Higgs scalars. In particular, the lightest neutralino is assumed to be a dominantly Bino-like mixed state, composed of Bino and Higgsino or Bino, Wino, and Higgsino. After computing all the three-point functions in the electroweak MSSM, we detail the contributions from the counterterms that arise in renormalizing these vertices in one-loop order. The amendment of the renormalized vertices impacts the spin-independent direct detection cross-sections of the scattering of nucleons with dark matter. We perform a comprehensive numerical scan over the parameter space where all the points satisfy the present B-physics constraints and accommodate the muon's anomalous magnetic moment. Finally, we exemplify a few benchmark points, which indulge the present searches of supersymmetric particles. After including the renormalized one-loop vertices, the spin-independent DM-nucleon cross-sections may be enhanced up to compared to its tree-level results. Finally, with the NLO cross-section, we use the recent LUX-ZEPLIN (LZ) results on the neutralino-nucleon scattering to display the relative rise in the lowest allowed band of the Higgsino mass parameter in the plane of the electroweak MSSM.

    hep-phPRD(2024)·16 citations
  18. 20*

    Speed of sound and polytropic index in QCD matter

    He Liu🇨🇳 · Yong-Hang Yang🇨🇳 · Chi Yuan🇨🇳 · Min Ju🇨🇳 · Xu-Hao Wu🇨🇳 · Peng-Cheng Chu🇨🇳

    We investigate the speed of sound and polytropic index of quantum chromodynamics (QCD) matter in the full phase diagram based on a 3-flavor Polyakov-looped Nambu-Jona-Lasinio (pNJL) model. The speed of sound and polytropic index in isothermal and adiabatic cases all have a dip structure at the low chemical potential side of the chiral phase transition boundary, and these quantities reach their global minimum values at the critical endpoint (CEP) but are not completely zero, where the values in adiabatic are lightly greater than those in isothermal. Different from the speed of sound, the polytropic index also exists a peak around the chiral phase transition boundary. Along the hypothetical chemical freeze-out lines, the speed of sound rapidly decreases near the CEP, followed by a small spinodal behavior, while the polytropic index, especially in isothermal, exhibits a more pronounced and nearly closed to zero dip structure as it approaches the CEP.

    hep-phnucl-thPRD(2024)·11 citations
  19. 21*

    Coupled-channel description of charmed heavy hadronic molecules within the meson-exchange model and its implication

    Lin Qiu🇨🇳 · Chang Gong🇨🇳 · Qiang Zhao🇨🇳

    Motivated by the first observation of the double-charm tetraquark by the LHCb Collaboration, we investigate the nature of as an isoscalar hadronic molecule in a meson-exchange potential model incorporated by the coupled-channel effects and three-body unitarity. The invariant mass spectrum can be well-described and the pole structure can be precisely extracted. Under the hypothesis that the interactions between the heavy flavor hadrons can be saturated by the light meson-exchange potentials, the near-threshold dynamics of can shed light on the binding of its heavy-quark spin symmetry (HQSS) partner () and on the nature of other heavy hadronic molecule candidates such as and in the charmed-anticharmed systems. The latter states can be related to in the meson-exchange potential model with limited assumptions based on the SU(3) flavor symmetry relations. The combined analysis, on the one hand, indicates the HQSS breaking effects among those HQSS partners, and on the other hand, highlights the role played by the short and long-distance dynamics for the near threshold and systems.

    hep-phhep-exPRD(2024)·22 citations
  20. 22*

    New Physics at Neutron Beam Dump

    P. S. Bhupal Dev🇺🇸 · Bhaskar Dutta🇺🇸 · Tao Han🇺🇸 · Aparajitha Karthikeyan🇺🇸 · Doojin Kim🇺🇸 · Hyunyong Kim🇺🇸

    We find a new utility of neutrons, usually treated as an experimental nuisance causing unwanted background, in probing new physics signals. They can either be radiated from neutrons (neutron bremsstrahlung) or appear through secondary particles from neutron-on-target interactions, dubbed "neutron beam dump". As a concrete example, we take the FASER/FASER2 experiment as a "factory" of high-energy neutrons that interact with the iron dump. We find that neutron-initiated bremsstrahlung contributions are comparable to proton-initiated ones, in terms of the resulting flux and the range of couplings that can be probed. The neutron bremsstrahlung can be used to probe dark gauge bosons with non-zero neutron coupling. In particular, we investigate protophobic gauge bosons and find that FASER/FASER2 can probe new parameter space. We also illustrate the possibility of neutron-induced secondary particles by considering axion-like particles with electron couplings. We conclude that the physics potential of FASER/FASER2 in terms of new physics searches can be greatly extended and improved with the inclusion of neutron interactions.

    hep-phhep-exPRD(2024)·7 citations
  21. 23*

    Complementary LHC searches for UV resonances of the decay operators

    Gang Li🇨🇳 · Jiang-Hao Yu🇨🇳 · Xiang Zhao🇨🇳

    We investigate the quark-level effective operators related to the neutrinoless double beta decay process, and their ultraviolet completions relevant to chiral enhancement effects at the hadronic level. We have classified several kinds of leptoquark models, matching to different standard model effective operators. Assuming weakly-coupled new physics, we find the ongoing -decay experiments are sensitive to new physics scale at around TeV, which is in the reach of LHC searches. We discuss the discovery potential of such resonances in the same-sign dilepton channels at the LHC. Therefore, the direct LHC searches and indirect -decay searches are complementary to each other in testing the UV completions of the effective operators for decay.

    hep-phhep-exPRD(2024)·5 citations
  22. 24*

    Double-Virtual NNLO QCD Corrections for Five-Parton Scattering: The Gluon Channel

    Giuseppe De Laurentis🇬🇧 · Harald Ita🇨🇭 · Maximillian Klinkert🇩🇪 · Vasily Sotnikov🇨🇭

    We compute the two-loop helicity amplitudes for the scattering of five gluons, including all contributions beyond the leading-color approximation. The analytic expressions are represented as linear combinations of transcendental functions with rational coefficients, which we reconstruct from finite-field samples obtained with the numerical unitarity method. Guided by the requirement of removing unphysical singularities, we find a remarkably compact generating set of rational coefficients, which we are able to display entirely in the manuscript. We implement our results in a public code, which provides efficient and reliable numerical evaluations for phenomenological applications.

    hep-phhep-thPRD(2024)·60 citations
  23. 25*

    Closing in on new chiral leptons at the LHC

    Daniele Barducci🇮🇹 · Luca Di Luzio🇮🇹 · Marco Nardecchia🇮🇹 · Claudio Toni🇮🇹

    We study the phenomenological viability of chiral extensions of the Standard Model, with new chiral fermions acquiring their mass through interactions with a single Higgs. We examine constraints from electroweak precision tests, Higgs physics and direct searches at the LHC. Our analysis indicates that purely chiral scenarios are perturbatively excluded by the combination of Higgs coupling measurements and LHC direct searches. However, allowing for a partial contribution from vector-like masses opens up the parameter space and non-decoupled exotic leptons could account for the observed 2 deviation in . This scenario will be further tested in the high-luminosity phase of the LHC.

    hep-phhep-exJHEP(2023)·22 citations
  24. 26*

    Quark and lepton modular models from the binary dihedral flavor symmetry

    Carlos Arriaga-Osante🇲🇽 · Xiang-Gan Liu🇺🇸 · Saul Ramos-Sanchez🇲🇽

    Inspired by the structure of top-down derived models endowed with modular flavor symmetries, we investigate the yet phenomenologically unexplored binary dihedral group 2D_3. After building the vector-valued modular forms in the representations of 2D_3 with small modular weights, we systematically classify all (Dirac and Majorana) mass textures of fermions with fractional modular weights and all possible 2+1-family structures. This allows us to explore the parameter space of fermion models based on 2D_3, aiming at a description of both quarks and leptons with a minimal number of parameters and best compatibility with observed data. We consider the separate possibilities of neutrino masses generated by either a type-I seesaw mechanism or the Weinberg operator. We identify a model that, besides fitting all known flavor observables, delivers predictions for six not-yet measured parameters and favors normal-ordered neutrino masses generated by the Weinberg operator. It would be interesting to figure out whether it is possible to embed our model within a top-down scheme, such as T2/Z4 heterotic orbifold compactifications.

    hep-phhep-thJHEP(2024)·10 citations
  25. 27*

    Hierarchies from Landscape Probability Gradients and Critical Boundaries

    Oleksii Matsedonskyi🇩🇪

    If the gradient of a probability distribution on a landscape of vacua aligns with the variation of some fundamental parameter, the parameter may be likely to take some non-generic value. Such non-generic values can be associated to critical boundaries, where qualitative changes of the landscape properties happen, or an anthropic bound is located. Assuming the standard volume-weighted and the local probability measures, we discuss ordered landscapes which can produce several types of the aligned probability gradients. The resulting values of the gradients are defined by the "closeness" of a given vacuum to the highest- or the lowest-energy vacuum. Using these ingredients we construct a landscape scanning independently the Higgs mass and the cosmological constant (CC). The probability gradient pushes the Higgs mass to its observed value, where a structural change of the landscape takes place, while the CC is chosen anthropically.

    hep-phJHEP(2024)·7 citations
  26. 28*

    The majoron coupling to charged leptons

    Antonio Herrero-Brocal🇪🇸 · Avelino Vicente🇪🇸

    The particle spectrum of all Majorana neutrino mass models with spontaneous violation of global lepton number include a Goldstone boson, the so-called majoron. The presence of this massless pseudoscalar changes the phenomenology dramatically. In this work we derive general analytical expressions for the 1-loop coupling of the majoron to charged leptons. These can be applied to any model featuring a majoron that have a clear hierarchy of energy scales, required for an expansion in powers of the low-energy scale to be valid. We show how to use our general results by applying them to some example models, finding full agreement with previous results in several popular scenarios and deriving novel ones in other setups.

    hep-phJHEP(2024)·16 citations
  27. 29*

    Ultra-light dark matter explanation of NANOGrav observations

    Debtosh Chowdhury🇮🇳 · Arpan Hait🇮🇳 · Subhendra Mohanty🇮🇳 · Suraj Prakash🇮🇳

    The angular correlation of pulsar residuals observed by NANOGrav and other pulsar timing array (PTA) collaborations show evidence in support of the Hellings-Downs correlation expected from stochastic gravitational wave background (SGWB). In this paper, we offer a non-gravitational wave explanation of the observed pulsar timing correlations as caused by an ultra-light gauge boson dark matter (ULDM). ULDM can affect the pulsar correlations in two ways. The gravitational potential of vector ULDM gives rise to a Shapiro time delay of the pulsar signals and a non-trivial angular correlation (as compared to the scalar ULDM case). In addition, if the pulsars have a non-zero charge of the dark matter gauge group, then the electric field of the local dark matter causes an oscillation of the pulsar and a corresponding Doppler shift of the pulsar signal. We point out that pulsars carry a significant charge of muons, and thus the vector dark matter contributes to both the Doppler oscillations and the time delay of the pulsar signals. The synergy between these two effects provides a better fit to the shape of the angular correlation function, as observed by the NANOGrav collaboration, compared to the standard SGWB explanation or the SGWB combined with time delay explanations. Our analysis shows that in addition to the SGWB signal, there may potentially be excess timing residuals attributable to the ULDM.

    hep-phastro-ph.COastro-ph.HEgr-qcPRD(2024)·31 citations
  28. 30*

    Exact solution of Boltzmann equation in a longitudinal expanding system

    Shile Chen🇨🇳 · Shuzhe Shi🇨🇳

    Analytical solutions to the microscopic Boltzmann equation are useful in testing the applicability and accuracy of macroscopic hydrodynamic theory. In this work, we present exact solutions of the relativistic Boltzmann equation, based on a new family of exact solutions of the relativistic ideal hydrodynamic equations [Phys. Rev. C 105, L021902].. To the best of our knowledge, this is the first exact solution that allows longitudinal expansion with broken boost invariance.

    nucl-thhep-phPRC(2024)·8 citations
  29. 31*

    Quantum Conformal Gravity

    Ichiro Oda🇯🇵 · Misaki Ohta🇵🇱

    We present the manifestly covariant canonical operator formalism of a Weyl invariant (or equivalently, a locally scale invariant) gravity whose classical action consists of the well-known conformal gravity and Weyl invariant scalar-tensor gravity, on the basis of the Becchi-Rouet-Stora-Tyupin (BRST) formalism. It is shown that there exists a Poincar-like global symmetry as in Einstein's general relativity, which should be contrasted to the case of only the Weyl invariant scalar-tensor gravity where we have a more extended Poincar-like global symmetry. This reduction of the global symmetry is attributed to the presence of the Stückelberg symmetry.

    hep-thgr-qchep-phJHEP(2024)·14 citations
  30. 32*

    Cosmological constraints on neutrino masses in light of JWST red and massive candidate galaxies

    Jianqi Liu🇨🇳 · Zhiqi Huang🇨🇳 · Yan Su🇨🇳

    The overabundance of the red and massive candidate galaxies observed by the James Webb Space Telescope (JWST) implies efficient structure formation or large star formation efficiency at high redshift . In the scenario of a low or moderate star formation efficiency, because massive neutrinos tend to suppress the growth of structure of the universe, the JWST observation tightens the upper bound of the neutrino masses. Assuming cold dark matter cosmology and a star formation efficiency (flat prior), we perform joint analyses of Planck+JWST and Planck+BAO+JWST, and obtain improved constraints and at 95% confidence level, respectively. Based on the above assumptions, the inverted mass ordering, which implies , is excluded by Planck+BAO+JWST at 92.7% confidence level.

    astro-ph.COastro-ph.GAhep-exhep-ph+1Res.Astron.Astrophys.(2024)·3 citations
  31. 33*

    The Cluster Mass Function and the -tension

    Alexandros Papageorgiou · Manolis Plionis · Spyros Basilakos🇬🇷 · H.M. Abdullah

    We use a large set of halo mass function (HMF) models in order to investigate their ability to represent the observational Cluster Mass Function (CMF), derived from the cluster catalogue, within the CDM cosmology. We apply the minimization procedure to constrain the free parameters of the models, namely and . We find that all HMF models fit well the observational CMF, while the Bocquet et. al. model provides the best fit, with the lowest value. Utilizing the {\em Index of Inconsistency} (IOI) measure, we further test the possible inconsistency of the models with respect to a variety of {\em Planck 2018} CDM cosmologies, resulting from the combination of different probes (CMB - BAO or CMB - DES). We find that the HMF models that fitted well the observed CMF provide consistent cosmological parameters with those of the {\em Planck} CMB analysis, except for the Press Schechter, Yahagi et. al., and Despali et. al. models which return large IOI values. The inverse -weighted average values of and , over all 23 theoretical HMF models are: and , which are clearly consistent with the results of {\em Planck}-CMB, providing . Within the CDM paradigm and independently of the selected HMF model in the analysis, we find that the current CMF shows no -tension with the corresponding {\em Planck}-CMB results.

    astro-ph.COgr-qchep-phMNRAS(2023)·3 citations
  32. 34*

    On the study of inclusive semileptonic decays of -meson from lattice QCD

    Paolo Gambino🇮🇹 · Shoji Hashimoto🇯🇵 · Sandro Mächler🇮🇹 · Marco Panero🇮🇹 · Francesco Sanfilippo🇮🇹 · Silvano Simula🇮🇹 · Antonio Smecca🇮🇹 · Nazario Tantalo🇮🇹

    In this contribution we describe a recent study focused on the lattice calculation of inclusive decay rates of heavy mesons. We show how the inclusive calculation can be achieved starting from four-point lattice correlation functions normalised appropriately. The correlators used in this project come from gauge ensembles provided by the JLQCD and ETM collaborations. An essential point of this method is the extraction of spectral densities from lattice correlators which is obtained using two of the most recent approaches in the literature. Our results are in remarkable agreement with analytical predictions from the operator-product expansion. This study represents the first step towards a full lattice QCD study of heavy mesons inclusive semileptonic decays.

    hep-lathep-phNuovo Cim.C(2024)·5 citations
  33. 35*

    Physics Opportunities at a Beam Dump Facility at PIP-II at Fermilab and Beyond

    A. A. Aguilar-Arevalo🇲🇽 · J. L. Barrow🇺🇸 · C. Bhat🇺🇸 · J. Bogenschuetz🇺🇸 · C. Bonifazi🇦🇷 · A. Bross🇺🇸 · B. Cervantes🇲🇽 · J. D'Olivo🇲🇽 · A. De Roeck🇨🇭 · B. Dutta🇺🇸 · M. Eads🇺🇸 · J. Eldred🇺🇸 and 36 other authors

    The Fermilab Proton-Improvement-Plan-II (PIP-II) is being implemented in order to support the precision neutrino oscillation measurements at the Deep Underground Neutrino Experiment, the U.S. flagship neutrino experiment. The PIP-II LINAC is presently under construction and is expected to provide 800~MeV protons with 2~mA current. This white paper summarizes the outcome of the first workshop on May 10 through 13, 2023, to exploit this capability for new physics opportunities in the kinematic regime that are unavailable to other facilities, in particular a potential beam dump facility implemented at the end of the LINAC. Various new physics opportunities have been discussed in a wide range of kinematic regime, from eV scale to keV and MeV. We also emphasize that the timely establishment of the beam dump facility at Fermilab is essential to exploit these new physics opportunities.

    hep-exhep-phphysics.ins-det13 citations
  34. 36*

    Probing EFT models using top quark production in multilepton final states

    Aashwin Basnet🇺🇸

    Using data consisting of top quarks produced with additional final leptons collected by the CMS detector at a center-of-mass energy of 13 TeV from 2016 to 2018 (138 fb), a search for beyond standard model (BSM) physics is presented. The BSM physics is probed in the context of Effective Field Theory (EFT) by parameterizing potential new physics effects in terms of 26 dimension-six EFT operators. The data are categorized based on lepton multiplicity, total lepton charge, jet multiplicities, and b-tagged jet multiplicities. To gain further sensitivity to potential new physics (NP) effects, events in each jet category are binned using kinematic differential distributions. A simultaneous fit to data is performed to put constraints on the 26 operators. The results are consistent with the standard model prediction.

    hep-exhep-ph2 citations
  35. 37*

    Gauging spacetime inversions in quantum gravity

    Daniel Harlow🇺🇸 · Tokiro Numasawa🇯🇵

    Spacetime inversion symmetries such as parity and time reversal play a central role in physics, but they are usually treated as global symmetries. In quantum gravity there are no global symmetries, so any spacetime inversion symmetries must be gauge symmetries. In particular this includes symmetry (in even dimensions usually combined with a rotation to become ), which in quantum field theory is always a symmetry and seems likely to be a symmetry of quantum gravity as well. In this article we discuss what it means to gauge a spacetime inversion symmetry, and we explain some of the more unusual consequences of doing this. In particular we argue that the gauging of is automatically implemented by the sum over topologies in the Euclidean gravity path integral, that in a closed universe the Hilbert space of quantum gravity must be a real vector space, and that in Lorentzian signature manifolds which are not time-orientable must be included as valid configurations of the theory. In particular we give an example of an asymptotically-AdS time-unorientable geometry which must be included to reproduce computable results in the dual CFT.

    hep-thgr-qchep-phJHEP(2026)·61 citations
  36. 38*

    Antineutrino Opacity in Neutron Stars in the Models Constrained by Recent Terrestrial Experiments and Astrophysical Observations

    Parada. T. P. Hutauruk🇰🇷

    In the present paper, we investigate neutral current (NC) antineutrino scattering with the constituents of neutron star (NS) matter at zero temperature. The modeling of standard matter in NS is constructed within the framework of both extended relativistic mean-field (E-RMF) and nonrelativistic Korea-IBS-Daegu-SKKU energy density functional (KIDS-EDF) models. In the E-RMF model, we use a new parameter, G3(M), which was constrained by the recent PREX II experiment measurement of neutron distribution in , while the KIDS-EDF models are constrained by terrestrial experiments, gravitational-wave signals, and astrophysical observations. Using both realistic and well-constrained matter models, we then calculate the antineutrino differential cross-section (ADCS) and antineutrino mean free path (AMFP) for the interaction between antineutrinos and neutron star (NS) matter constituents using linear response theory. It is found that the AMFP for the KIDS0 and KIDSA models are smaller compared to the SLy4 model and the E-RMF model with the G3(M) parameter. The AMFP result of the Skyrme model with the SLy4 parameter set is found to have a prediction almost similar to that of the E-RMF model with the G3(M) parameter. Contributions of each nucleon to the total AMFP are also presented for the G3(M) model.

    nucl-thastro-ph.HEastro-ph.SRhep-phAstronomy(2024)·4 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.