PaperPanorama

HEP Phenomenology·hep-ph

Wed·Sep 9, 2020

21 papers15 primary·6 cross-listed·reconstructed*

  1. 01*

    Astrophysical hints for magnetic black holes

    Diptimoy Ghosh🇮🇳 · Arun Thalapillil🇮🇳 · Farman Ullah🇮🇳

    We discuss a cornucopia of potential astrophysical signatures and constraints on magnetically charged black holes of various masses. As recently highlighted, being potentially viable astrophysical candidates with immense electromagnetic fields, they may be ideal windows to fundamental physics, electroweak symmetry restoration and non-perturbative quantum field theoretic phenomena. We investigate various potential astrophysical pointers and bounds -- including limits on charges, location of stable orbits and horizons in asymptotically flat and asymptotically de Sitter backgrounds, bounds from galactic magnetic fields and dark matter measurements, characteristic electromagnetic fluxes and tell-tale gravitational wave emissions during binary inspirals. Stable orbits around these objects hold an imprint of their nature and in the asymptotically de Sitter case, there is also a qualitatively new feature with the emergence of a stable outer orbit. We consider binary inspirals of both magnetic and neutral, and magnetic and magnetic, black hole pairs. The electromagnetic emissions and the gravitational waveform evolution, along with inter-black hole separation, display distinct features. Many of the astrophysical signatures may be observationally glaring -- for instance, even in regions of parameter space where no electroweak corona forms, owing to magnetic fields that are still many orders of magnitude larger than even Magnetars, their consequent electromagnetic emissions will be spectacular during binary inspirals. While adding new results, our discussions also complement works in similar contexts, that have appeared recently in the literature.

    hep-phastro-ph.HEgr-qchep-thPRD(2021)·48 citations
  2. 02*

    Strong coupling constants of doubly heavy baryons with vector mesons in QCD

    T. M. Aliev🇹🇷 · K. Şimşek🇺🇸

    Using the most general form of the interpolating current for baryons, the strong electric and magnetic coupling constants of light vector mesons and with doubly heavy baryons are computed within the light-cone sum rules. We consider 2- and 3-particle distribution amplitudes of the aforementioned vector mesons. The obtained results can be useful in the analysis of experimental data on the properties of doubly heavy baryons conducted at LHC.

    hep-phEPJC(2020)·18 citations
  3. 03*

    Revisiting radiative leptonic decay

    Yue-Long Shen🇨🇳 · Yan-Bing Wei🇨🇳 · Xue-Chen Zhao🇨🇳 · Si-Hong Zhou🇨🇳

    In this paper, we summarize the existing methods of solving the evolution equation of the leading-twist -meson LCDA. Then, in the Mellin space, we derive a factorization formula with next-to-leading-logarithmic (NLL) resummation for the form factors in the decay at leading power in . Furthermore, we investigate the power suppressed local contributions, factorizable non-local contributions (which are suppressed by and ), and soft contributions to the form factors. In the numerical analysis, which employs the two-loop-level hard function and the jet function, we find that both the resummation effect and the power corrections can sizably decrease the form factors. Finally, the integrated branching ratios are also calculated for comparison with future experimental data.

    hep-phCPC(2020)·16 citations
  4. 04*

    Jet charge modification in dense QCD matter

    Haitao Li · Ivan Vitev🇺🇸

    In these proceedings we report a recent calculation of the jet charge modification in heavy-ion relative to proton collisions at the LHC. Jets have played an essential role in constraining theories of in-medium parton shower evolution and in determining the properties of the quark-gluon plasma created in ultra-relativistic nuclear reactions. It is important to extend these studies to flavor-tagged jets and explore observables that are sensitive to their partonic origin. The average jet charge, introduced early on in the history of quantum chromodynamics, is a proxy for the electric charge of the quark or gluon that initiates the jet. In the framework of soft-collinear effective theory, we show how to evaluate the jet charge in a dense strongly-interacting matter environments. We identify observables that can isolate the contribution of in-medium branching from isospin effects and present predictions for the transverse momentum dependence of the jet charge distribution in nucleus-nucleus collisions and its modification relative to the proton case.

    hep-phnucl-thPoS(2021)·1 citation
  5. 05*

    Targeted Exploration of Dark Photon Parameter Space at Mu3e

    Ishira Fernando🇺🇸 · Sean Hackett🇺🇸 · Alex Boulton-McKeehan🇺🇸

    In 2016, the Atomki collaboration discovered an anomaly in the decay of beryllium excited states that matched theoretical predictions for an unknown force-carrying boson. We suggest a search for such a hypothesized `dark photon' over the same parameter space to be carried out at the Mu3e detector. We discuss the mechanisms by which a dark photon may be observed, and outline the details of this detector experiment. We extrapolate on this groundwork to analyze projections for the sensitivity of the experiment. Additionally, we quantify the expected precision of the measurements and how the resulting data would indicate the existence of a dark photon. Finally, we discuss potential challenges of the proposed search at Mu3e.

    hep-phhep-ex0 citations
  6. 06*

    New Physics in anomalies and its implications for the complementary neutral current decays

    Faisal Munir Bhutta🇨🇳 · Zhuo-Ran Huang🇫🇷 · Cai-Dian Lü🇨🇳 · M. Ali Paracha🇵🇰 · Wenyu Wang🇨🇳

    We study the Standard Model and the new physics predictions for the lepton-flavour-universality violating (LFUV) ratios in various channels with scalar, pseudoscalar, vector, axial-vector, and baryon final states, considering both unpolarized and polarized final state hadrons. In order to formulate physical observables, we use the model independent effective Hamiltonian approach and employ the helicity formalism. We provide the explicit expressions of the helicity amplitudes in terms of the Wilson coefficients and the hadronic form factors by using the same kinematical configuration and polarization conventions for all the decay channels.We perform the numerical analysis with new physics scenarios selected from the recent global fits to data, having specific new physics model interpretations. We find that some of the LFUV ratios for these complementary channels in different kinematical regions have high sensitivity to new physics and the future measurements of them in Belle II and LHCb experiments, along with testing new physics/LFUV, can help to distinguish among some of the different new physics possibilities.

    hep-phhep-exNPB(2022)·27 citations
  7. 07*

    -odd gluonic operators in QCD spin physics

    Yoshitaka Hatta🇺🇸

    We explore connections between high energy QCD spin physics and -odd scalar gluonic operators and , the latter being called the Weinberg operator in the context of the nucleons' electric dipole moment. We first introduce the twist-four generalized parton distribution (GPD) associated with the topological operator . This has interesting applications in spin physics which go beyond the standard framework in terms of twist-two and twist-three distributions. In the second part, we show that the off-forward matrix element of the Weinberg operator is proportional to a certain twist-four correction to the structure function in polarized deep inelastic scattering.

    hep-phPRD(2020)·18 citations
  8. 08*

    Contribution of third generation quarks to two-loop helicity amplitudes for W boson pair production in gluon fusion

    Christian Brønnum-Hansen🇩🇪 · Chen-Yu Wang🇩🇪

    We compute the contribution of third generation quarks () to the two-loop amplitude for on-shell boson pair production in gluon fusion . We present plots for the amplitude across partonic phase space as well as reference values for two kinematic points. The master integrals are efficiently evaluated by numerically solving a system of ordinary differential equations.

    hep-phJHEP(2021)·23 citations
  9. 09*

    Thermally produced scalar singlet as leptonphilic dark matter

    Sun Xu-Dong🇨🇳 · Dai Ben-Zhong🇨🇳

    This work proposes a simple extension of the Standard Model where a scalar singlet and a leptonphilic scalar doublet exist. The scalar singlet could act as thermally produced dark matter. It annihilates into leptons through -channel and benefit from the Breit--Winger resonance, so current thermally averaged cross-section are greatly enhanced. The constraints from the isotropic diffuse -ray background and correct dark matter relic abundance are analyzed. We find that the enhanced cross-section could fit the needed cross-section to explain the cosmic electron/positron excess.

    hep-phastro-ph.HE0 citations
  10. 10*

    New opportunities at the photon energy frontier

    Jaroslav Adam · Christine Aidala · Aaron Angerami · Benjamin Audurier · Carlos Bertulani · Christian Bierlich · Boris Blok · James Daniel Brandenburg · Stanley Brodsky · Aleksandr Bylinkin · Veronica Canoa Roman · Francesco Giovanni Celiberto and 63 other authors

    Ultra-peripheral collisions (UPCs) involving heavy ions and protons are the energy frontier for photon-mediated interactions. UPC photons can be used for many purposes, including probing low- gluons via photoproduction of dijets and vector mesons, probes of beyond-standard-model processes, such as those enabled by light-by-light scattering, and studies of two-photon production of the Higgs.

    hep-phhep-exnucl-ex34 citations
  11. 11*

    Medium induced QCD cascades: broadening and rescattering during branching

    E. Blanco🇵🇱 · K. Kutak🇵🇱 · W. Placzek🇵🇱 · M. Rohrmoser🇵🇱 · R. Straka🇵🇱

    We study evolution equations describing jet propagation through quark--gluon plasma (QGP). In particular we investigate the contribution of momentum transfer during branching and find that such a contribution is sizeable. Furthermore, we study various approximations, such as the Gaussian approximation and the diffusive approximation to the jet-broadening term. We notice that in order to reproduce the BDIM equation (without the momentum transfer in the branching) the diffusive approximation requires a very large value of the jet-quenching parameter .

    hep-phJHEP(2021)·17 citations
  12. 12*

    Modified lepton couplings and the Cabibbo-angle anomaly

    Antonio Coutinho🇨🇭 · Andreas Crivellin🇨🇭 · Claudio Andrea Manzari🇨🇭

    Significant discrepancies between the different determinations of the Cabibbo angle have been observed. Here, we point out that this "Cabibbo-angle anomaly" can be explained by lepton flavour universality (LFU) violating New Physics (NP) in the neutrino sector. However, modified neutrino couplings to Standard Model gauge bosons also affect many other observables sensitive to LFU violation, which have to be taken into account in order to assess the viability of this explanation. Therefore, we perform a model-independent Bayesian global analysis and find that non-zero modifications of electron and muon neutrino couplings are preferred at more than (corresponding to more than ). Our results show that constructive effects in the muon sector are necessary, meaning simple models with right-handed neutrinos are discarded and more sophisticated NP models required.

    hep-phhep-exhep-latnucl-ex+1PoS(2021)·18 citations
  13. 13*

    Effective models of a semi-quark gluon plasma

    Yoshimasa Hidaka🇯🇵 · Robert D. Pisarski🇺🇸

    In the deconfined regime of a non-Abelian gauge theory at nonzero temperature, previously it was argued that if a (gauge invariant) source is added to generate nonzero holonomy, that this source must be linear for small holonomy. The simplest example of this is the second Bernoulli polynomial. However, then there is a conundrum in computing the free energy to in the coupling constant , as part of the free energy is discontinuous as the holonomy vanishes. In this paper we investigate two ways of generating the second Bernoulli polynomial dynamically: as a mass derivative of an auxiliary field, and from two dimensional ghosts embedded isotropically in four dimensions. Computing the holonomous hard thermal loop (HHTL) in the gluon self-energy, we find that the limit of small holonomy is only well behaved for two dimensional ghosts, with a free energy which to is continuous as the holonomy vanishes.

    hep-phhep-thnucl-thPRD(2021)·17 citations
  14. 14*

    Flavorgenesis

    Andreas Ekstedt🇨🇿 · Renato M. Fonseca🇨🇿 · Michal Malinský🇨🇿

    We present a model where all fermions are contained in a single irreducible representation of an SU(19) gauge symmetry group. If there is only one scalar field, Yukawa interactions are controlled by a single number rather than by one or more matrices of couplings. The low-energy concept of flavor emerges entirely from the scalar-sector parameters; more specifically, entries of the Standard Model Yukawa matrices are controlled by several vacuum expectation values.

    hep-phPLB(2021)·5 citations
  15. 15*

    The Axion Quality Problem: Global Symmetry Breaking and Wormholes

    James Alvey🇬🇧 · Miguel Escudero🇬🇧

    Continuous global symmetries are expected to be broken by gravity, which can lead to important phenomenological consequences. A prime example is the threat that this poses to the viability of the Peccei-Quinn solution to the strong CP problem. In this paper, we explore the impact of wormholes as a source of global symmetry breaking by gravity. We review the current status of wormholes and global symmetries and note that, surprisingly, the axion has a quality problem within non-perturbative Einstein gravity. Although these wormholes lead to a large breaking of global symmetries, we show that their effect is nonetheless relevant for the model building of gauge protected axions. We also find wormhole solutions within two scenarios: (i) an extended global symmetry group within Einstein gravity, and (ii) U(1) wormholes within the low-energy limit of an open String Theory. The former allows us to show that the concept of a global symmetry in General Relativity is somewhat ill-defined. The latter illustrates that for motivated values of the string coupling constant, axions appear to have a quality problem within the open String Theory we consider.

    hep-phhep-thJHEP(2021)·42 citations
  16. 16*

    Spectral action in matrix form

    Ali H. Chamseddine🇱🇧 · John Iliopoulos🇫🇷 · Walter D. van Suijlekom🇳🇱

    Quantization of the noncommutative geometric spectral action has so far been performed on the final component form of the action where all traces over the Dirac matrices and symmetry algebra are carried out. In this work, in order to preserve the noncommutative geometric structure of the formalism, we derive the quantization rules for propagators and vertices in matrix form. We show that the results in the case of a product of a four-dimensional Euclidean manifold by a finite space, could be cast in the form of that of a Yang-Mills theory. We illustrate the procedure for the toy electroweak model.

    hep-thhep-phEPJC(2020)·6 citations
  17. 17*

    Gauge Invariance, Polar Coordinates and Inflation

    Ali Akil🇨🇳 · Xi Tong🇨🇳

    We point out the necessity of resolving the apparent gauge dependence in the quantum corrections of cosmological observables for Higgs-like inflation models. We highlight the fact that this gauge dependence is due to the use of an asymmetric background current which is specific to a choice of coordinate system in the scalar manifold. Favoring simplicity over complexity, we further propose a practical shortcut to gauge-independent inflationary observables by using effective potential obtained from a polar-like background current choice. We demonstrate this shortcut for several explicit examples and present a gauge-independent prediction of inflationary observables in the Abelian Higgs model. Furthermore, with Nielsen's gauge dependence identities, we show that for any theory to all orders, a gauge-invariant current term gives a gauge-independent effective potential and thus gauge-invariant inflationary observables.

    hep-thastro-ph.COgr-qchep-phJHEP(2021)·1 citation
  18. 18*

    Snowmass 2021 Letter of Interest: Decays of Heavy Flavors Beauty, Charm, and Tau

    Y. Amhis🇫🇷 · Sw. Banerjee🇺🇸 · E. Ben-Haim🇫🇷 · M. Bona🇬🇧 · A. Bozek🇵🇱 · C. Bozzi🇮🇹 · J. Brodzicka🇵🇱 · M. Chrzaszcz🇨🇭 · J. Dingfelder🇩🇪 · U. Egede🇦🇺 · M. Gersabeck🇬🇧 · T. Gershon🇬🇧 and 27 other authors

    The Heavy Flavor Averaging Group provides this Letter of Interest (LOI) as input to the Snowmass 2021 Particle Physics Community Planning Exercise organized by the Division of Particles and Fields of the American Physical Society. Research in heavy flavor physics is an essential component of particle physics, both within and beyond the Standard Model. To fully realize the potential of this field, we advocate strong support within the U.S. high energy physics program for ongoing and future experimental and theory research in heavy flavor physics.

    hep-exhep-ph0 citations
  19. 19*

    First results from Hybrid Hadronization in small and large systems

    M. Kordell II · A. Angerami · S. A. Bass · S. Cao · Y. Chen · J. Coleman · L. Cunqueiro · T. Dai · L. Du · R. Ehlers · H. Elfner · D. Everett and 38 other authors

    "Hybrid Hadronization" is a new Monte Carlo package to hadronize systems of partons. It smoothly combines quark recombination applicable when distances between partons in phase space are small, and string fragmentation appropriate for dilute parton systems, following the picture outlined by Han et al. [PRC 93, 045207 (2016)]. Hybrid Hadronization integrates with PYTHIA 8 and can be applied to a variety of systems from to collisions. It takes systems of partons and their color flow information, for example from a Monte Carlo parton shower generator, as input. In addition, if for collisions a thermal background medium is provided, the package allows sampling thermal partons that contribute to hadronization. Hybrid Hadronization is available for use as a standalone code and is also part of JETSCAPE since the 2.0 release. In these proceedings we review the physics concepts underlying Hybrid Hadronization and demonstrate how users can use the code with various parton shower Monte Carlos. We present calculations of hadron chemistry and fragmentation functions in small and large systems when Hybrid Hadronization is combined with parton shower Monte Carlos MATTER and LBT. In particular, we discuss observable effects of the recombination of shower partons with thermal partons.

    nucl-thhep-phPoS(2021)·1 citation
  20. 20*

    Production of massive bosons from the decay of a massless particle beam

    Ariel Arza🇷🇺

    Taking a two interacting scalar toy model with interaction term , we study the production of particles coming from the decay of an asymptotic and highly occupied beam of particles. We perform a nonperturbative analysis coming from parametric resonant instabilities and investigate the possibility that massive particles are produced from decays of massless particles from the beam. Although this process is not present in a perturbative analysis, our nonperturbative approach allows it to happen under certain conditions. For a momentum of the beam particles and a mass of the produced ones, we find that the decay is allowed if the energy density of the beam exceeds the instability threshold . We also provide an analytical expression for the spontaneous decay rate at the earliest time.

    hep-thhep-phPRD(2022)·6 citations
  21. 21*

    Edges and Endpoints in 21-cm Observations from Resonant Photon Production

    Andrea Caputo🇪🇸 · Hongwan Liu🇺🇸 · Siddharth Mishra-Sharma🇺🇸 · Maxim Pospelov🇺🇸 · Joshua T. Ruderman🇺🇸 · Alfredo Urbano🇮🇹

    We introduce a novel class of signatures---spectral edges and endpoints---in 21-cm measurements resulting from interactions between the standard and dark sectors. Within the context of a kinetically mixed dark photon, we demonstrate how resonant dark photon-to-photon conversions can imprint distinctive spectral features in the observed 21-cm brightness temperature, with implications for current, upcoming, and proposed experiments targeting the cosmic dawn and the dark ages. These signatures open up a qualitatively new way to look for physics beyond the Standard Model using 21-cm observations.

    astro-ph.COhep-phPRL(2021)·18 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.