PaperPanorama

HEP Phenomenology·hep-ph

Wed·Jan 10, 2024

18 papers14 primary·4 cross-listed·reconstructed*

  1. 01*

    On interpretation of fluctuations of conserved charges at high T

    T.D. Cohen🇺🇸 · L.Ya. Glozman🇦🇹

    Fluctuations of conserved charges calculated on the lattice which can be measured experimentally, are well reproduced by a hadron resonanse gas model at temperatures below T_{ch} ~ 155 MeV and radically deviate from the hadron resonance gas predictions above the chiral restoration crossover. This behavior is typically interpreted as an indication of deconfinement in the quark-gluon plasma regime. We present an argument that this interpretation may be too simple. The argument is based on the scaling of quantities with the number of colors: demonstration of deconfinement and QGP requires observable that is sensitive to N_c^2 gluons while the conserved charges are sensitive only to quarks and above T_{ch} scale as N_c^1. The latter scaling is consistent with the existence of an intermediate regime characterized by restored chiral symmetry and by approximate chiral spin symmetry which is a symmetry of confining interaction. In this regime the energy density, pressure and entropy density scale as N_c^1. In the large N_c limit this regime might become a distinct phase separated from the hadron gas and from QGP by phase transitions. A natural observable that associates with deconfinement and is directly sensitive to deconfined N_c^2-1 gluons is the Polyakov loop; in the N_c=3 world it remains very close to 0 at temperatures well above chiral crossover, reaches the value 0.5 around 3T_{ch} and the value close to 1 at temperatures ~1 GeV.

    hep-phhep-latnucl-exnucl-thEPJA(2024)·16 citations
  2. 02*

    Measuring jet quenching with a Bayesian inference analysis of hadron and jet data by JETSCAPE

    R. Ehlers🇺🇸 · A. Angerami🇺🇸 · R. Arora🇺🇸 · S. A. Bass🇺🇸 · S. Cao🇺🇸 · Y. Chen🇺🇸 · L. Du🇨🇦 · H. Elfner🇩🇪 · W. Fan🇺🇸 · R. J. Fries🇺🇸 · C. Gale🇨🇦 · Y. He🇨🇳 and 41 other authors

    The JETSCAPE Collaboration reports the first multi-messenger study of the QGP jet transport parameter using Bayesian inference, incorporating all available hadron and jet inclusive yield and jet substructure data from RHIC and the LHC. The theoretical model utilizes virtuality-dependent in-medium partonic energy loss coupled to a detailed dynamical model of QGP evolution. Tension is observed when constraining for different kinematic cuts of the inclusive hadron data. The addition of substructure data is shown to improve the constraint on , without inducing tension with the constraint due to inclusive observables. These studies provide new insight into the mechanisms of jet interactions in matter, and point to next steps in the field for comprehensive understanding of jet quenching as a probe of the QGP.

    hep-phnucl-exnucl-thEPJ Web Conf.(2024)·4 citations
  3. 03*

    Logarithmic moments of B-meson quasidistribution amplitude

    Shu-Man Hu🇨🇳 · Ji Xu🇨🇳 · Shuai Zhao🇨🇳

    It was demonstrated that the lattice simulation of -meson light-cone distribution amplitude (LCDA) is feasible via the quasi-distribution amplitude (quasi-DA) in large momentum effective theory (LaMET). The structures of logarithmic moments (LMs) of -meson quasi-DA is explored in this work. The one-loop results indicate mixing in the matching: the -th LM would be not only factorized into the -th LM of LCDA, but also other moments with different power, accompanied by short distance coefficients. These results supply the understanding of the matching in LaMET and may provide guidance to the lattice study of LMs or other parameters of -meson LCDA.

    hep-phhep-latEPJC(2024)·9 citations
  4. 04*

    The effect of charm quark on chiral phase transition in holographic QCD

    Hiwa A. Ahmed🇨🇳 · Mamiya Kawaguchi🇨🇳 · Mei Huang🇨🇳

    We investigate the effect of charm quark on the chiral phase transition of light quarks at finite temperature based on the four-flavor soft-wall holographic QCD model. In the massless limit, we find that the thermal chiral phase transition is of the second order in the four-quark flavor system. In the case with the massive charm quark and the massless light and strange quarks, the order of the phase transition changes to the first order. This is due to the quark flavor symmetry breaking which is associated with the violation of the axial symmetry. Once the light and strange quarks get massive, the explicit chiral symmetry breaking becomes eminent, then the crossover phase transition is realized at the physical quark masses. We also map the order of the phase transition on a phase diagram in the quark mass plane where the light- and strange-quark masses are degenerate but differ from the value of the charm quark mass. This phase diagram is an extension of the conventional Columbia plot to the four-quark flavor system. The critical exponents related to the chiral phase transition are also addressed.

    hep-phhep-latPRD(2024)·9 citations
  5. 05*

    Using gravitational waves to see the first second of the Universe

    Rishav Roshan🇬🇧 · Graham White🇬🇧

    Gravitational waves are a unique probe of the early Universe, as the Universe is transparent to gravitational radiation right back to the end of inflation. In this article, we summarise detection prospects and the wide scope of primordial events that could lead to a detectable stochastic gravitational wave background. Any such background would shed light on what lies beyond the Standard Model, sometimes at remarkably high scales. We overview the range of strategies for detecting a stochastic gravitational wave background before delving deep into three major primordial events that can source such a background. Finally, we summarize the landscape of other sources of primordial backgrounds.

    hep-phastro-ph.COgr-qchep-thRMP(2025)·124 citations
  6. 06*

    Dipole momenta and compositeness of the lepton at Belle II

    M. Fabbrichesi🇮🇹 · L. Marzola🇪🇪

    The large number of leptons available at the Belle II experiment makes it possible to study their properties and the extent of their compositeness. Our strategy relies on three observables defined in terms of elements of the polarization density matrix of the produced pairs, which we obtain via quantum tomography. The observables are able to explore values of the magnetic dipole moment down to , which is two order of magnitude better than the current experimental limit, constrain the electromagnetic radius below fm and exclude an electric dipole moment larger than e cm. The quoted limits are at the confidence level and are obtained for a benchmark integrated luminosity of 1 ab.

    hep-phPRD(2024)·17 citations
  7. 07*

    Jet medium modifications

    Carlota Andres🇫🇷

    Since the start of the heavy-ion collision programs at the Relativistic Heavy Ion Collider and the Large Hadron Collider, the study of jet modifications resulting from their interactions with the produced QCD matter has provided a unique tool to investigate and characterize the properties of the quark-gluon plasma. In this mini-overview, I will present the recent theoretical advancements in describing and understanding the modifications of jets within a QCD medium.

    hep-phnucl-thPoS(2024)·0 citations
  8. 08*

    Phenomenology of isospin-symmetry breaking with vector mesons

    Péter Kovács🇭🇺 · György Wolf🇭🇺 · Nora Weickgenannt🇫🇷 · Dirk H. Rischke🇩🇪

    We study the effect of isospin-symmetry breaking in the framework of the extended Linear Sigma Model (eLSM) in vacuum. In this model, several particles mix with each other at tree level, due to the three non-zero scalar condensates (non-strange, strange, isospin). We resolve these mixings with the help of various field transformations. We compute all possible meson mixings and decay widths at tree level and perform a fit to PDG data. A very good fit is found if we exclude the (very small ~keV) decay. We also investigate the violation of Dashen's theorem.

    hep-phPRD(2024)·6 citations
  9. 09*

    Determining the structure of couplings at the LHC

    Saurabh D. Rindani🇮🇳

    Experiments at the Large Hadron Collider (LHC) have found that the Higgs boson discovered in 2012 has properties largely consistent with predictions from the standard model (SM). However, the determination of the couplings of the Higgs boson to various other SM particles is not very precise, and it is possible that future experiments with enhanced accuracy may be able to detect deviations from the SM if any. One category of couplings studied at the LHC is Higgs flavour-changing couplings to a top-quark and a light-quark ( or ) combination, which vanishes at tree level in the SM, but could be induced by interactions beyond the SM. Experiments have put a limit on the magnitude of these couplings, only one coupling assumed nonzero at a time. We investigate here to what extent the relative magnitudes of the and couplings and their chirality structure can be determined by means of more detailed kinematics at a future higher-luminosity version of the LHC in the process of production. In particular, we find that the top-quark polar-angle distribution in production could reveal the relative magnitudes of the and couplings, while the azimuthal distribution of the charged leptons arising from top decay can be used for a determination of the chiral structure of the coupling.

    hep-phhep-exPramana(2024)·0 citations
  10. 10*

    Pulsar Kick by the Chiral Anisotropy Conversion

    Kenji Fukushima🇯🇵 · Chengpeng Yu🇯🇵

    We discuss a novel mechanism for the proto-neutron star acceleration assisted by the chiral separation effect which induces an axial vector current in a dense medium. We consider the process of neutrinos scattering off the background axial vector current of electrons. We show that anisotropy of either magnetic field or density in momentum space is essential for nonzero recoil and we call this mechanism the chiral anisotropy conversion. Assuming a strong magnetic field T and anisotropy by , we find that the chiral anisotropy conversion can yield the velocity of order of typical pulsar kicks, i.e., km/s.

    hep-phastro-ph.HEPRD(2025)·6 citations
  11. 11*

    and the nature of the two resonance

    Jia-Xin Lin🇨🇳 · Hua-Xing Chen🇨🇳 · Wei-Hong Liang🇨🇳 · Chu-Wen Xiao🇨🇳 · Eulogio Oset🇪🇸

    Starting from the molecular picture for the and resonances, which are dynamically generated by the interaction of coupled channels, the most important of which are the for the and for the , we evaluate the ratio of decay widths for the and decays, the latter of which has been recently investigated by the LHCb collaboration, and we obtain a ratio of the order of unity. The present results should provide an incentive for the related decay into the resonance to be performed, which would provide valuable information on the nature of these two resonances.

    hep-phEPJC(2024)·9 citations
  12. 12*

    Production of true para-muonium in linearly polarized photon fusions

    Jian-Ping Dai🇨🇳 · Shuai Zhao🇨🇳

    True muonium (TM) -- the bound state of -- has not been discovered yet. It was demonstrated that searching for TM via fusions in heavy ion collisions is feasible due to the enhancement of the atom number. We study the production of the true para-muonium (pTM) in the collisions of linearly polarized photons in the experiments of heavy-ion collisions, calculate the production rate as well as the transverse spectrum of pTM, and explore the discovery potential in nuclear experiments. Our results show that there is a significant correlation between the linearly polarized photon distribution and the transverse momentum distribution of pTM. The optimal kinematic region of the generated pTM is identified, which can provide a theoretical guide to the detection of pTM in experiments.

    hep-phhep-exnucl-exnucl-thPRD(2024)·10 citations
  13. 13*

    Modular invariant holomorphic observables

    Mu-Chun Chen🇺🇸 · Xiang-Gan Liu🇺🇸 · Xue-Qi Li🇺🇸 · Omar Medina🇪🇸 · Michael Ratz🇺🇸

    In modular invariant models of flavor, observables must be modular invariant. The observables discussed so far in the literature are functions of the modulus and its conjugate, . We point out that certain combinations of observables depend only on , i.e. are meromorphic, and in some cases even holomorphic functions of . These functions, which we dub ``invariants'' in this Letter, are highly constrained, renormalization group invariant, and allow us to derive many of the models' features without the need for extensive parameter scans. We illustrate the robustness of these invariants in two existing models in the literature based on modular symmetries, and . We find that, in some cases, the invariants give rise to robust relations among physical observables that are independent of . Furthermore, there are instances where additional symmetries exist among the invariants. These symmetries are relevant phenomenologically and may provide a dynamical way to realize symmetries of mass matrices.

    hep-phhep-thPLB(2024)·9 citations
  14. 14*

    Model-independent estimates for loop-induced baryon-number-violating nucleon decays

    John Gargalionis🇪🇸 · Juan Herrero-Garcia🇪🇸 · Michael A. Schmidt🇦🇺

    Baryon number is an accidental symmetry of the Standard Model (SM) Lagrangian that so far has been measured to be exactly preserved, although it is expected to be violated at higher energies. In this work we compute order-of-magnitude estimates for the matching contributions of generic ultraviolet models to effective operators that generate nucleon decay processes. This is done in a systematic and automated way using operators constructed from SM fields up to dimension nine and working in a framework that has proved useful in the study of lepton-number violation. For each of the operators we derive estimates for the rates of different nucleon-decay channels. These allow us to establish model-independent lower bounds on the underlying new-physics scale and identify potential correlations between the various decay modes. The results are most relevant for genuine models that do not generate nucleon decay at a lower order. This analysis is especially timely given the expected future sensitivities in numerous experiments such as Hyper-K, DUNE, JUNO and THEIA.

    hep-phJHEP(2024)·23 citations
  15. 15*

    Effect of Longitudinal Fluctuations of D Weizsäcker-Williams Field on Pressure Isotropization of Glasma

    Hidefumi Matsuda🇨🇳 · Xu-Guang Huang🇨🇳

    We investigate the effects of boost invariance breaking on the isotropization of pressure in the glasma, using the D glasma simulation. The breaking is attributed to spatial fluctuations of the classical color charge density along the collision axis. We present numerical results for pressure and energy density at mid-rapidity and across a wider rapidity region. It is found that, despite varying longitudinal correlation lengths, the behaviors of the pressure isotropizations are qualitatively similar. The numerical results suggest that, in the initial stage, longitudinal color electromagnetic fields develop, similar to those in the boost invariant glasma. Subsequently, these fields evolve into a dilute glasma, expanding longitudinally in a manner akin to a dilute gas. We also show that the energy density at mid-rapidity exhibits a decay in the dilute glasma stage.

    physics.plasm-phhep-phnucl-thEntropy(2024)·9 citations
  16. 16*

    Non-singular cosmology from non-supersymmetric AdS instability conjecture

    Cao H. Nam🇻🇳

    We show that the non-supersymmetric AdS instability conjecture can point to how quantum gravity removes the initial Big Bang singularity, leading to a potential resolution for the past-incomplete inflationary universe. From the constraints on the dynamics of the universe realized as the nucleation of a thin-wall bubble mediating the decay of the non-supersymmetric AdS vacuum, we find the critical temperature and the critical scale factor for which the universe exists. These critical quantities are all finite and determined in terms of the parameters specifying the stringy 10D AdS vacuum solutions. Additionally, we derive the prediction of quantum gravity for and relying on the inflationary observations.

    hep-thgr-qchep-phPRD(2024)·2 citations
  17. 17*

    An Effective Theory for Graphene Nanoribbons with Junctions

    Johann Ostmeyer🇬🇧 · Lado Razmadze🇩🇪 · Evan Berkowitz🇩🇪 · Thomas Luu🇩🇪 · Ulf-G. Meißner🇩🇪

    Graphene nanoribbons are a promising candidate for fault-tolerant quantum electronics. In this scenario, qubits are realised by localised states that can emerge on junctions in hybrid ribbons formed by two armchair nanoribbons of different widths. We derive an effective theory based on a tight-binding ansatz for the description of hybrid nanoribbons and use it to make accurate predictions of the energy gap and nature of the localisation in various hybrid nanoribbon geometries. We use quantum Monte Carlo simulations to demonstrate that the effective theory remains applicable in the presence of Hubbard interactions. We discover, in addition to the well known localisations on junctions, which we call `Fuji', a new type of `Kilimanjaro' localisation smeared out over a segment of the hybrid ribbon. We show that Fuji localisations in hybrids of width and armchair nanoribbons occur around symmetric junctions if and only if , while edge-aligned junctions never support strong localisation. This behaviour cannot be explained relying purely on the topological invariant, which has been believed the origin of the localisations to date.

    cond-mat.mes-hallcond-mat.str-elhep-phquant-phPRB(2024)·4 citations
  18. 18*

    An All-loop Soft Theorem for Pions

    Christoph Bartsch🇨🇿 · Karol Kampf🇨🇿 · Jiri Novotny🇨🇿 · Jaroslav Trnka🇨🇿

    In this letter, we discuss a generalization of the Adler zero to loop integrands in the planar limit of the non-linear sigma model (NLSM). While possible to maintain at one-loop, the Adler zero for integrands is violated starting at the two-loop order and is only recovered after integration. Here we propose a non-zero soft theorem satisfied by loop integrands with any number of loops and legs. This requires a generalization of NLSM integrands to an off-shell framework with certain deformed kinematics. Defining an `algebraic soft limit', we identify a particularly simple non-vanishing soft behavior of integrands, which we call the `algebraic soft theorem'. We find that the proposed soft theorem is satisfied by the `surface' integrand of Arkani-Hamed, Cao, Dong, Figueiredo and He, which is obtained from the shifted surfacehedron integrand. Finally, we derive an on-shell version of the algebraic soft theorem that takes an interesting form in terms of propagator renormalization factors and lower-loop integrands in a mixed theory of pions and scalars.

    hep-thhep-phPRD(2024)·19 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.