PaperPanorama

HEP Phenomenology·hep-ph

Tue·Feb 27, 2024

35 papers28 primary·7 cross-listed·reconstructed*

  1. 01*

    Fireball anti-nucleosynthesis

    Michael A. Fedderke🇺🇸 · David E. Kaplan🇺🇸 · Anubhav Mathur🇺🇸 · Surjeet Rajendran🇺🇸 · Erwin H. Tanin🇺🇸

    The tentative identification of approximately ten relativistic anti-helium cosmic-ray events at AMS-02 would, if confirmed, challenge our understanding of the astrophysical synthesis of heavy anti-nuclei. We propose a novel scenario for the enhanced production of such anti-nuclei that is triggered by isolated, catastrophic injections of large quantities of energetic Standard Model (SM) anti-quarks in our galaxy by physics beyond the Standard Model (BSM). We demonstrate that SM anti-nucleosynthetic processes that occur in the resulting rapidly expanding, thermalized fireballs of SM plasma can, for a reasonable range of parameters, produce the reported tentative ratio of anti-helium-3 to anti-helium-4 events at AMS-02, as well as their relativistic boosts. Moreover, we show that this can be achieved without violating anti-deuterium or anti-proton flux constraints for the appropriate anti-helium fluxes. A plausible BSM paradigm for the catastrophic injections is the collision of macroscopic composite dark-matter objects carrying large net anti-baryon number. Such a scenario would require these objects to be cosmologically stable, but to destabilize upon collision, promptly releasing a fraction of their mass energy into SM anti-particles within a tiny volume. We show that, in principle, the injection rate needed to attain the necessary anti-helium fluxes and the energetic conditions required to seed the fireballs appear possible to obtain in such a paradigm. We leave open the question of constructing a BSM particle physics model to realize this, but we suggest two concrete scenarios as promising targets for further investigation.

    hep-phastro-ph.COastro-ph.GAastro-ph.HEPRD(2024)·15 citations
  2. 02*

    Studying exotic hadrons in high energy nuclear collisions

    Xingyu Guo🇨🇳 · Jinfeng Liao🇺🇸 · Hongxi Xing🇨🇳

    Studies of exotic hadrons such as the state provide crucial insights into the fundamental force governing the strong interaction dynamics, with an emerging new frontier to investigate their production in high energy nuclear collisions where a partonic medium is present. This contribution discusses the production mechanisms of exotic hadrons in such collisions and analyzes novel effects from the partonic medium, demonstrating the potential to use heavy ion measurements for deciphering their internal structure and understanding their in-medium evolutions.

    hep-phEPJ Web Conf.(2024)·1 citation
  3. 03*

    Unified Interpretation of Muon g-2 anomaly, 95 GeV Diphoton, and Excesses in the General Next-to-Minimal Supersymmetric Standard Model

    Junjie Cao🇨🇳 · Xinglong Jia🇨🇳 · Jingwei Lian🇨🇳

    We investigate three intriguing anomalies within the framework of the General Next-to-Minimal Supersymmetric Standard Model. These anomalies include a significant deviation of the experimental results for the muon anomalous magnetic moment from its Standard Model prediction, with a confidence level of ; a joint observation by the CMS and ATLAS collaborations of a diphoton excess with a local significance of in the invariant mass distribution around 95.4 GeV; and a reported excess in the production at LEP with a local significance of . Through analytical and numerical analyses, we provide unified interpretations across an extensive parameter space that remain consistent with current experimental restrictions from data on the Higgs boson at 125 GeV, B-physics measurements, dark matter observables, as well as existing searches for supersymmetry and extra Higgs bosons. We attribute the muon anomaly to loops involving muon-smuon-neutralino and muon-sneutrino-chargino interactions, while attributing the diphoton and excesses to the resonant production of a singlet-dominated scalar. These proposed solutions are poised for experimental tests at the high-luminosity LHC and future linear colliders.

    hep-phPRD(2024)·48 citations
  4. 04*

    Radiative transitions between and quarkonium states

    Vaishali Guleria🇮🇳 · Eshete Gebrehana🇪🇹 · Shashank Bhatnagar🇮🇳

    In this work we study the E1 decay processes, , and in the framework of Bethe-Salpeter equation and calculate their decay widths. We have used algebraic forms of Salpeter wave functions obtained through analytic solutions of mass spectral equations for ground and excited states of , and equal mass quarkonia in approximate harmonic oscillator basis to do analytic calculations of their decay widths. These decay widths have been compared with data and other models.

    hep-phPramana(2025)·3 citations
  5. 05*

    Two-body hadronic weak decays of bottomed hadrons

    Ying Zhang🇨🇳 · Guangzhao He🇨🇳 · Quanxing Ye🇨🇳 · Da-Cheng Yan🇨🇳 · Jun Hua🇨🇳 · Qian Wang🇨🇳

    The structure of light diquarks plays a crucial role in the formation of exotic hadrons beyond the conventional quark model, especially in their line shapes of bottomed hadron decays. We study the two-body hadronic weak decays of bottomed baryons and bottomed mesons to probe the light diquark structure and pin down the quark-quark correlations in the diquark picture. We find that the light diquark does not favor a compact structure. For instance, the isoscalar diquark in can be easily split and rearranged to form via the color-suppressed transition. This provides a hint that the hidden charm pentaquark states produced in decays could be the hadronic molecular candidates. This quantitative study resolves the apparent conflicts between the production mechanism and molecular nature of these states observed in experiment.

    hep-phChin.Phys.Lett.(2024)·3 citations
  6. 06*

    Four-gluon vertex in collinear kinematics

    A. C. Aguilar🇧🇷 · M. N. Ferreira🇪🇸 · J. Papavassiliou🇪🇸 · L. R. Santos🇧🇷

    To date, the four-gluon vertex is the least explored component of the QCD Lagrangian, mainly due to the vast proliferation of Lorentz and color structures required for its description. In this work we present a nonperturbative study of this vertex, based on the one-loop dressed Schwinger-Dyson equation obtained from the 4PI effective action. A vast simplification is brought about by resorting to ``collinear'' kinematics, where all momenta are parallel to each other, and by appealing to the charge conjugation symmetry in order to eliminate certain color structures. Out of the fifteen form factors that comprise the transversely-projected version of this vertex, two are singled out and studied in detail; the one associated with the classical tensorial structure is moderately suppressed in the infrared regime, while the other diverges logarithmically at the origin. Quite interestingly, both form factors display the property known as ``planar degeneracy'' at a rather high level of accuracy. With these results we construct an effective charge that quantifies the strength of the four-gluon interaction, and compare it with other vertex-derived charges from the gauge sector of QCD.

    hep-phhep-lathep-thnucl-thEPJC(2024)·13 citations
  7. 07*

    A comprehensive calculation of the Primakoff process and the solar axion flux

    Quan-feng Wu🇨🇳 · Xun-Jie Xu🇨🇳

    The Primakoff process plays a crucial role in axion production in astrophysical environments and laboratories. Given the rising interest in axion physics and many on-going experimental activities, we conduct a comprehensive calculation of this process and carefully examine several aspects that have been neglected in the literature. In particular, our calculation is valid for axions with significantly large masses, which would be of importance to axion searches utilizing crystal and liquid xenon detectors. We present the most updated calculation of the Primakoff solar axion flux, with a simple parametrization that is applicable to a broad range of axion masses up to a few tens of keV. Our code is publicly available at GitHub.

    hep-phastro-ph.COastro-ph.SRhep-exJCAP(2024)·15 citations
  8. 08*

    A Panoramic Study of -Factors for 111 Processes at the 14 TeV LHC

    Dongjoo Kim🇰🇷 · Soojin Lee🇰🇷 · Hanseok Jung🇰🇷 · Dongchan Kim🇰🇷 · Jinheung Kim🇰🇷 · Jeonghyeon Song🇰🇷

    In this comprehensive study, we investigate -factors () for a broad array of Standard Model processes at the 14 TeV LHC, which are pivotal for background assessments in Beyond the Standard Model (BSM) searches. Using MadGraph5_aMC@NLO, we calculate the leading-order and next-to-leading order (NLO) cross-sections and compute the corresponding -factors for 111 processes. Our analysis reveals -factors ranging from 1.005 for to 4.221 for . Key findings include: (i) processes involving photons display significantly high -factors, attributed to gluon-initiated processes at NLO; (ii) processes with multiple particle productions, particularly those involving vector bosons, exhibit elevated -factors due to multiple real emission processes; (iii) there exists an inverse correlation between the number of jets and , indicating that the addition of jets generally leads to a decrease in . Additionally, our investigation into differential -factors relative to transverse momentum and invariant mass shows notable increases with higher , but minimal changes with invariant mass. This study highlights the indispensable role of precise -factor evaluations for accurate interpretations of BSM search outcomes.

    hep-phhep-exJ.Korean Phys.Soc.(2024)·12 citations
  9. 09*

    Probing new physics with polarization components of the tau lepton in quasielastic scattering process

    Xin-Shuai Yan🇨🇳 · Liang-Hui Zhang🇨🇳 · Qin Chang🇨🇳 · Ya-Dong Yang🇨🇳

    Kinematics restrict the ability of rare charm decays to explore the charged Lepton Flavor Violation processes mediated by the quark-level transition. To fill the gap, we propose exploring new physics (NP) through the quasielastic scattering process and the polarization of the lepton. As analyzing modes for the polarization, we consider the decays , , and , and show that the polarization components can be extracted from analyzing the kinematics of the visible decay products. In the framework of a general low-energy effective Lagrangian, we then perform a detailed analysis of the polarization components in various aspects and scrutinize possible NP signals. With one upcoming experimental setup, we finally demonstrate promising event rate can be expected for the cascade process and, even in the worst-case scenario -- no signals is observed at all -- it can still provide a competitive potential for constraining the NP, compared with those from the high- dilepton invariant mass tails at high-energy colliders.

    hep-phhep-exPRD(2024)·2 citations
  10. 10*

    Proton spin in double-logarithmic approximation

    B.I. Ermolaev🇷🇺

    Proton is a composite particle, so its spin S_P is made from the spins of the partons which the proton consists of. The discrepancy between S_P = 1/2 and the experimentally detected sum of the parton spins was named Proton Spin Puzzle. Solution to this problem includes formulae for the parton helicities valid in the whole range of x. There are approaches in the literature for calculating the helicities. As a theoretical basis they apply different evolution equations. Despite these equations are constructed for operating in widely different regions of x and account for different contributions, all of them equally well suited for solving the proton spin problem. Our explanation of this situation is that the main impact on values of the parton spin contributions should be brought not by the evolution equations themselves but by phenomenological fits for initial parton distributions. We suggest a more theoretically grounded approach to description of the parton helicities and apply it to solving the proton spin problem. It combines the total resummation of double logarithms (DL), accounting for the running coupling effects and DGLAP formulae, leading to expressions for the helicities valid at arbitrary x. As a consequence, the set of involved phenomenological parameters in our approach is minimal and its in uence on the helicity behaviour is weak. We apply our approach to solve the proton spin problem in the straightforward way and make an estimate, demonstrating that the RHIC data complemented by the DL contributions from the regions of x beyond the RHIC scope are well compatible with the value S_P = 1/2.

    hep-phhep-exEPJC(2025)·2 citations
  11. 11*

    Quantum Decoherence effects on precision measurements at DUNE and T2HK

    G. Barenboim🇪🇸 · A. Calatayud-Cadenillas🇵🇪 · A. M. Gago🇵🇪 · C. A. Ternes🇮🇹

    We investigate the potential impact of neutrino quantum decoherence on the precision measurements of standard neutrino oscillation parameters in the DUNE and T2HK experiments. We show that the measurement of , and is stronger effected in DUNE than in T2HK. On the other hand, DUNE would have a better sensitivity than T2HK to observe decoherence effects. By performing a combined analysis of DUNE and T2HK we show that a robust measurement of standard parameters would be possible, which is not guaranteed with DUNE data alone.

    hep-phhep-exPLB(2024)·12 citations
  12. 12*

    Neutrino oscillations with atmospheric neutrinos at large liquid argon TPCs

    Animesh Chatterjee🇨🇭 · Albert De Roeck🇨🇭

    We propose to study atmospheric neutrino interactions with a unique event topology to distinguish neutrinos and anti-neutrinos using a liquid argon time projection chamber in an experiment such as DUNE. The detection of CC1P and CC0P events will allow to access neutrino oscillation physics complementary to accelerator based beam neutrinos. Our analysis shows that a sensitivity to the mass-ordering can be achieved with a significance close to 4{\sigma} and a CP violation sensitivity with more than 2{\sigma} with a data sample of 140 kt-yr of atmospheric neutrinos in the DUNE detector.

    hep-phhep-exPLB(2024)·5 citations
  13. 13*

    Spin Effect induced Momentum Spiral and Asymmetry Degree in Pair Production

    Li-Na Hu🇨🇳 · Hong-Hao Fan🇨🇳 · Orkash Amat🇨🇳 · Suo Tang🇨🇳 · Bai-Song Xie🇨🇳

    Spin effect on the pair production under circularly polarized fields are investigated. Significantly different from what momentum spirals caused by two counter-rotating fields with a time delay, we find for the first time that the spirals can also be induced due to the particles spin effect even if in a single field. We further examine the bichromatic combinational fields, the inhomogeneous spiral structures can be observed in the momentum spectrum, in particular, the spiral not only does exist in two cases of spin but also is about two orders of magnitude amplifier than that in the single field. Meanwhile, the spin asymmetry degree on the momentum distributions is investigated and found that there exist the effect of spin flip with increasing time delay between two fields. The spin asymmetry degree on the number density can reach to in a certain of condition. These results indicate that the signatures of created particles, especially the spiral structures are strongly associated with the information of laser field as well as the created particle spin, which can deepen the understanding of vacuum pair production.

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

    On Lepton Flavor Violation and Dark Matter in Scotogenic model with Trimaximal Mixing

    Tapender🇮🇳 · Surender Verma🇮🇳 · Sanjeev Kumar🇮🇳

    We examine the Scotogenic model employing the TM mixing matrix, , for neutrinos and parameterize the Yukawa coupling matrix based on the diagonalization condition for the neutrino mass matrix, . Our investigation centers on analyzing the relic density of cold dark matter () and possible lepton flavor violation (LFV) in the model. In particular, we study coannihilation dynamics and LFV, in the model, considering various coannihilation scenarios including non-zero mass splitting between lightest sterile neutrinos. While analyzing, we have taken into consideration respective experimental constraints on and LFV alongside neutrino oscillation data. Our study reveals that in both normal and inverted hierarchy of neutrino masses, splitting between masses of and can be up to for the model to be in consonance with the above constraints. In the second part, we have extended the analysis incorporating extended magic symmetry in enabling us to completely determine Yukawa coupling matrix (). We observe a notable exclusion of the effective Majorana mass parameter space by cosmological bound on sum of neutrino masses, particularly in the normal hierarchy while inverted hierarchy scenario is excluded due to constraints coming from extended magic symmetry. These findings shed light on the interplay among the Scotogenic model, TM mixing, and extended magic symmetry, offering insights into the permitted parameter space and hierarchy exclusion.

    hep-phEur.Phys.J.Plus(2025)·8 citations
  15. 15*

    Gluon generalized parton distributions of the proton at non-zero skewness

    Dipankar Chakrabarti🇮🇳 · Poonam Choudhary🇮🇳 · Bheemsehan Gurjar🇮🇳 · Tanmay Maji🇮🇳 · Chandan Mondal🇨🇳 · Asmita Mukherjee🇮🇳

    Using a recently developed light-front spectator model that incorporates gluon, where the light-front wave functions are modeled from the soft-wall AdS/QCD prediction, we examine the leading twist gluon generalized parton distributions (GPDs) inside the proton. We derive the chirally even and odd distributions by using the overlap representation of the light-front wave functions. In terms of GPDs at non-zero skewness, we investigate the entire three-dimensional representation of gluons. We analyse the gluon impact parameter distributions at using the Fourier transform of GPDs. We address the total angular momentum contribution of the gluons by using the Ji's sum rule and also give our predictions for both the canonical and kinetic orbital angular momentum in the light-cone gauge.

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

    Exact relations between the conductivities and their connection to the chemical composition of QCD matter

    Jan A. Fotakis🇩🇪 · Jakob E. Lohr🇩🇪 · Carsten Greiner🇩🇪

    We present exact relations between the diffusion coefficients or conductivities, , of strongly-interacting matter. We show that once the diagonal entries are known in two different charge representations, the off-diagonal coefficients are functions of the diagonal entries once isospin symmetry applies. As an important example, we infer the conductivities on the basis of available calculations from lattice quantum chromodynamics (LQCD) and argue that these computations suffer under the approximations made to achieve them. Further, we argue that the representation of the conductivities w.r.t. to the conserved quark-flavors may deliver more insight into the chemical composition of strongly-interacting matter.

    hep-phnucl-thPRC(2024)·3 citations
  17. 17*

    Generalized quantum measurement in spin-correlated hyperon-antihyperon decays

    Sihao Wu🇨🇳 · Chen Qian🇨🇳 · Yang-Guang Yang🇨🇳 · Qun Wang🇨🇳

    The rapid developments of Quantum Information Science (QIS) have opened up new avenues for exploring fundamental physics. Quantum nonlocality, a key aspect for distinguishing quantum information from classical one, has undergone extensive examinations in particles' decays through the violation of Bell-type inequalities. Despite these advancements, a comprehensive framework based on quantum information theory for particle interaction is still lacking. Trying to close this gap, we introduce a generalized quantum measurement description for decay processes of spin-1/2 hyperons. We validate this approach by aligning it with established theoretical calculations and apply it to the joint decay of correlated pairs. We employ quantum simulation to observe the violation of CHSH inequalities in hyperon decays. Our generalized measurement description is adaptable and can be extended to a variety of high energy processes, including decays of vector mesons, , in the Beijing Spectrometer III (BESIII) experiment at the Beijing Electron Positron Collider (BEPC). The methodology developed in this study can be applied to quantum correlation and information processing in fundamental interactions.

    hep-phquant-phChin.Phys.Lett.(2024)·29 citations
  18. 18*

    Chiral phase transition and spin alignment of vector meson in the Polarized-Polyakov-loop Nambu-Jona-Lasinio model under rotation

    Fei Sun🇨🇳 · Jingdong Shao🇨🇳 · Rui Wen🇨🇳 · Kun Xu🇨🇳 · Mei Huang🇨🇳

    By using the extrapolation method, a polarized Polykov-loop potential at finite real angular velocity is constructed from the lattice results at finite imaginary angular velocity. The chiral and deconfinement phase transitions under rotation have been simultaneously investigated in the Polarized-Polyakov-loop Nambu-Jona-Lasinio (PPNJL) model. It is observed that both critical temperatures of deconfinement and chiral phase transition increase with the angular velocity, which is in consistent with lattice results. The spin alignment of vector meson has the negative deviation of under rotation, and the deviation in the PPNJL model is much more significant than that in the NJL model and the quark coalescence model, which revealing the important role of rotating gluons on the quark polarization.

    hep-phPRD(2024)·49 citations
  19. 19*

    Equivalence among color singlet, color octet and diquark structure in a chiral quark model

    Yue Tan🇨🇳 · Xuejie Liu🇨🇳 · Xiaoyun Chen🇨🇳 · Yuheng Wu🇨🇳 · Hongxia Huang🇨🇳 · Jialun Ping🇨🇳

    Since the quark model was put forward, theoretical researchers have always attached great importance to the study of hidden color channels (including color octets and diquark structure). Because of the influence of color Van der waals forces, the hidden color channel itself has strong attraction, which provides a dynamic mechanism for the formation of resonance state or bound state. In this paper, taking the system as an example, under the framework of multi-Gaussian expansion method, a set of relatively complete color singlets (that is, the ground state of the color singlet plus its corresponding higher-order component) is used to replace the contribution of the color octet. Similarly, we endeavor to replace the diquark structure with a relatively complete set of molecular states, encompassing both the ground state and excited states. Our results demonstrate that the color octet structure can be effectively replaced by a set of relatively complete color singlet bases, while the diquark structure cannot be entirely substituted by an equivalently comprehensive set of molecular state bases.

    hep-phPRD(2024)·7 citations
  20. 20*

    Observability of CMB spectrum distortions from dark matter annihilation

    Shao-Ping Li🇨🇳

    Even after dark matter chemically freezes out in the early universe, electromagnetic cascades from dark matter annihilation can still perturb the background photon spectrum when the universe temperature cools down to 0.5 keV. We revisit the CMB spectrum distortions caused by -wave dark matter annihilation under the updated Planck data and the future CMB sensitivity, concluding that -wave annihilation cannot create observable distortions under forecast sensitivities of the (Super-)PIXIE missions. We further detail the case of -wave dark matter annihilation, demonstrating the observability of the primordial -distortion. Taking current constraints from primordial light elements, structure formations, cosmic electron-positron rays, and gamma rays, we find that the -distortion reaching the observational limit as large as can only be realized with a dark matter mass at 10--50 MeV and a kinetic decoupling temperature around 1 keV. The upper bound of the -wave annihilation cross section can be strengthened by an order of magnitude if the -distortion is not detected.

    hep-phastro-ph.COJCAP(2024)·8 citations
  21. 21*

    Momentum dependent flavor radiative corrections to the coherent elastic neutrino-nucleus scattering for the neutrino charge-radius determination

    M. Atzori Corona🇮🇹 · M. Cadeddu🇮🇹 · N. Cargioli🇮🇹 · F. Dordei🇮🇹 · C. Giunti🇮🇹

    Despite being neutral particles, neutrinos can have a non-zero charge radius, which represents the only non-null neutrino electromagnetic property in the standard model theory. Its value can be predicted with high accuracy and its effect is usually accounted for through the definition of a radiative correction affecting the neutrino couplings to electrons and nucleons at low energy, which results effectively in a shift of the weak mixing angle. Interestingly, it introduces a flavour-dependence in the cross-section. Exploiting available neutrino-electron and coherent elastic neutrino-nucleus scattering (CENS) data, there have been many attempts to measure experimentally the neutrino charge radius. Unfortunately, the current precision allows one to only determine constraints on its value. In this work, we discuss how to properly account for the neutrino charge radius in the CENS cross-section including the effects of the non-null momentum-transfer in the neutrino electromagnetic form factor, which have been usually neglected when deriving the aforementioned limits. We apply the formalism discussed to a re-analysis of the COHERENT cesium iodide and argon samples and the NCC-1701 germanium data from the Dresden-II nuclear power plant. We quantify the impact of this correction on the CENS cross-section and we show that, despite being small, it can not be neglected in the analysis of data from future high-precision experiments. Furthermore, this momentum dependence can be exploited to significantly reduce the allowed values for the neutrino charge radius determination.

    hep-phhep-exJHEP(2024)·31 citations
  22. 22*

    Identifying an tetraquark state versus a molecular state by formation time, velocity and temperature in relativistic nuclear collisions

    Zhi-Lei She🇨🇳 · An-Ke Lei🇨🇳 · Yu-Liang Yan🇨🇳 · Dai-Mei Zhou🇨🇳 · Wen-Chao Zhang🇨🇳 · Hua Zheng🇨🇳 · Liang Zheng🇨🇳 · Yi-Long Xie🇨🇳 · Gang Chen🇨🇳 · Ben-Hao Sa🇨🇳

    The production of exotic hadron in collisions at is investigated by the parton and hadron cascade model PACIAE in this work. In the simulation the final partonic state (quark matter, QM) and the final hadronic state (hadron matter, HM) are continuously processed and recorded. The compact tetraquark state and loose molecular state are, respectively, coalesced and recombined in the QM and HM with the quantum statistical mechanics inspired dynamically constrained phase-space coalescence model. The formation time, velocity and temperature of QM (tetraquark state) and HM (molecular state) are proposed as identifying criteria between the two states. Our results in transverse momentum spectrum and rapidity distribution, etc. show a significant discrepancy between the two states and confirm that they are also valuable criteria identifying the compact tetraquark state or molecular state.

    hep-phPRC(2024)·12 citations
  23. 23*

    Probing the inverse moment of -meson distribution amplitude via form factors

    Rusa Mandal🇮🇳 · Praveen S Patil🇮🇳 · Ipsita Ray🇮🇳

    We investigate the inverse moment of the -meson light-cone distribution amplitude (LCDA), denoted as and defined within the heavy quark effective theory, through the calculation of form factors. The presence of the -quark inside the -meson dictates a notable departure of approximately in the value compared to the non-strange case , as computed within the QCD sum rule approach, albeit with significant uncertainty. First, we compute the decay constant of the -meson utilizing two-point sum rules while retaining finite -quark mass contributions. Next, we constrain the parameter by calculating form factors within the light-cone sum rule approach, using -meson LCDAs, and leveraging Lattice QCD estimates at zero momentum transfer from the HPQCD collaboration. Our findings yield = 480 92 MeV when expressing the -meson LCDAs in the Exponential model, consistent with previous QCD sum rule estimate yet exhibiting a 1.5-fold improvement in uncertainty. Furthermore, we compare the form factor predictions, based on the extracted value, with earlier analyses for other channels such as and .

    hep-phhep-exhep-latJHEP(2024)·3 citations
  24. 24*

    Medium-induced photon bremsstrahlung in neutrino-nucleus, antineutrino-nucleus, and electron-nucleus scattering from multiple QED interactions

    Oleksandr Tomalak🇺🇸 · Ivan Vitev🇺🇸

    Interactions of charged leptons with nuclei and the naive tree-level kinematics of these processes are affected by radiation of photons induced by the QED nuclear medium. We evaluate cross-section modifications at leading orders of the number of correlated interactions inside the nucleus, known as the opacity expansion. We derive results for soft and collinear types of the bremsstrahlung at the first three orders in opacity and generalize them to higher orders. We present the leading in opacity energy spectra of soft and collinear photons and radiative energy loss inside the nucleus for experiments with lepton kinematics in the GeV energy range. At leading power of the Glauber soft-collinear effective field theory, the soft radiation is further resummed to all orders both in opacity and in the electromagnetic coupling constant. We find that the soft and collinear medium-induced radiation is vacuumlike, and additional corrections are power suppressed. Despite the negligible modification to the induced photon spectra, the nuclear medium-induced radiation sizably affects the broadening of charged leptons in the direction orthogonal to their propagation.

    hep-phhep-exnucl-exnucl-thPRD(2024)·8 citations
  25. 25*

    Froggatt-Nielsen Meets the SMEFT

    Eetu Loisa🇬🇧 · Jim Talbert🇬🇧

    We study the matching of Froggatt-Nielsen theories of flavour onto the Standard Model Effective Field Theory (SMEFT), upon integrating out a heavy Beyond-the-Standard-Model (BSM) scalar `flavon' whose vacuum expectation value breaks an Abelian flavour symmetry at energies well above the electroweak scale, . We include matching contributions to the infrared (Warsaw basis) SMEFT sourced from ultraviolet contact terms suppressed up to order in the Froggatt-Nielsen Lagrangian, where is an arbitrary deep-ultraviolet scale where further unspecified BSM particles are dynamical. This includes tree-level (one-loop) ultraviolet diagrams with effective vertices. We first do so with a toy model, but then generalize our findings to arbitrary Frogatt-Nielsen charges. Our results indicate a rich and non-trivial signature of Froggatt-Nielsen theories on the (otherwise) model-independent operators of the SMEFT, and we briefly speculate on extending our analysis to broader classes of BSM flavour models, e.g. non-Abelian and/or gauged theories. We thus take an important step towards determining how to use rapidly developing theoretical and experimental SMEFT technologies to gain unambiguous insight into the SM's longstanding fermion flavour puzzle.

    hep-phJHEP(2024)·11 citations
  26. 26*

    Exploring the Sensitivity to Non-Standard Neutrino Interactions of NaI and Cryogenic CsI Detectors at the Spallation Neutron Source

    Sabya Sachi Chatterjee🇩🇪 · Stéphane Lavignac🇫🇷 · O. G. Miranda🇲🇽 · G. Sanchez Garcia🇪🇸

    After the first observation of coherent elastic neutrino-nucleus scattering (CENS) by the COHERENT collaboration, many efforts are being made to improve the measurement of this process, making it possible to constrain new physics in the neutrino sector. In this paper, we study the sensitivity to non-standard interactions (NSIs) and generalized neutrino interactions (GNIs) of two experimental setups at the Spallation Neutron Source at Oak Ridge National Laboratory: a NaI detector with characteristics similar to the one that is currently being deployed there, and a cryogenic CsI detector proposed at the same facility. We show that a combined analysis of the data from these detectors, whose target nuclei have significantly different proton-to-neutron ratios, could help to partially break the parameter degeneracies arising from the interference between the Standard Model and NSI contributions to the CENS cross section, as well as between different NSI parameters. By contrast, only a slight improvement over the current CsI constraints is expected for parameters that do not interfere with the SM contribution.

    hep-phhep-exnucl-thPRD(2024)·8 citations
  27. 27*

    Bare mass effects on the reheating process after inflation

    Simon Clery🇫🇷 · Marcos A. G. Garcia🇲🇽 · Yann Mambrini🇫🇷 · Keith A. Olive🇺🇸

    We consider the effects of a bare mass term for the inflaton, when the inflationary potential takes the form about its minimum with . We concentrate on , but discuss general cases as well. Further, we assume , where is the inflaton field value when the inflationary expansion ends. We show that the presence of a mass term (which may be present due to radiative corrections or supersymmetry breaking) can significantly alter the reheating process, as the equation of state of the inflaton condensate changes from to when drops below . We show that for a mass , the mass term will dominate at reheating. We compute the effects on the reheating temperature for cases where reheating is due to inflaton decay (to fermions, scalars, or vectors) or to inflaton scattering (to scalars or vectors). For scattering to scalars and in the absence of a decay, we derive a strong upper limit to the inflaton bare mass , as there is always a residual inflaton background which acts as cold dark matter. We also consider the effect of the bare mass term on the fragmentation of the inflaton condensate.

    hep-phastro-ph.COPRD(2024)·13 citations
  28. 28*

    Reference frame dependence of the periodically oscillating Coulomb field in the Proca theory

    Bogdan Damski🇵🇱

    The Proca theory of the real massive vector field admits non-equilibrium solutions, where the asymptotic dynamics of the electric field is dominated by the periodically oscillating Coulomb component. We discuss how such field configurations are seen in different reference frames, where we find an intriguing spatial pattern of the vector field and the electromagnetic field associated with it. Our studies are carried out in the framework of the classical Proca theory.

    hep-phhep-thNPB(2024)·1 citation
  29. 29*

    Toward extracting the scattering phase shift from integrated correlation functions II: a relativistic lattice field theory model

    Peng Guo🇺🇸

    In present work, a relativistic relation that connects the difference of interacting and non-interacting integrated two-particle correlation functions in finite volume to infinite volume scattering phase shift through an integral is derived. We show that the difference of integrated finite volume correlation functions converge rapidly to its infinite volume limit as the size of periodic box is increased. The fast convergence of our proposed formalism is illustrated by analytic solutions of a contact interaction model, the perturbation theory calculation, and also Monte Carlo simulation of a complex lattice field theory model.

    hep-lathep-phnucl-thPRD(2024)·8 citations
  30. 30*

    CDM and SIDM Interpretations of the Strong Gravitational Lensing Object JWST-ER1

    Demao Kong🇺🇸 · Daneng Yang🇺🇸 · Hai-Bo Yu🇺🇸

    van Dokkum et al. (arXiv:2309.07969) reported the discovery of JWST-ER1, a strong lensing object at redshift , using data from the James Webb Space Telescope. The lens mass within the Einstein ring is times higher than the expected stellar mass from a Chabrier initial mass function, indicating a high dark matter density. In this work, we show that a cold dark matter halo, influenced by gas-driven adiabatic contraction, can account for the observed lens mass. We interpret the measurement of JWST-ER1 in the self-interacting dark matter scenario and show that the cross section per particle mass is generally favored. Intriguingly, can also be consistent with the strong lensing observations of early-type galaxies at redshift , where adiabatic contraction is not observed overall.

    astro-ph.GAhep-phApJL(2024)·21 citations
  31. 31*

    The Cosmic Neutrino Background

    Douglas Scott🇨🇦

    The cosmic neutrino background is like the cosmic microwave background, but less photon-y and more neutrino-ey. The CNB is also less talked about than the CMB, mostly because it's nearly impossible to detect directly. But if it could be detected, it would be interesting in several ways that are discussed.

    astro-ph.COhep-ph15 citations
  32. 32*

    Exploring the Strongly-Interacting Regime of Effective Multi-Body Interactions in a Trapped Ultracold Atom System

    Kantaro Honda🇯🇵 · Yosuke Takasu🇯🇵 · Yuki Haruna · Yusuke Nishida🇯🇵 · Yoshiro Takahashi🇯🇵

    A two-body interaction or force between quantum particles is ubiquitous in nature, and the microscopic description in terms of the bare two-body interaction is the basis for quantitatively describing interacting few- and many-body systems. Alternatively, the effective description in terms of an effective two-body interaction successfully captures the essence of the systems. However, for several important observations, the explanation in terms of an effective two-body interaction is not satisfactory, and the effective three-body interaction has played an essential role in understanding the systems. In this study, we investigate a few-body system comprising of ultracold bosons tightly confined in a deep optical lattice site, which is effectively described as zero-dimensional bosons. By combining an occupancy-resolving high-resolution laser spectroscopy with an inter-orbital Feshbach resonance controlling the bare two-body interaction over a wide range, we experimentally reveal the behaviors of few-atom systems in a strongly interacting regime. Our results, for which perturbative calculations do not provide proper explanations, serve as a valuable and precise benchmark for theoretical approaches to strongly interacting few-body systems. As one important illustration, we obtain a clear signature of an effective four-body interaction evidenced by the binding energies of four and more atoms. This work is an important step for our deeper understanding of strongly interacting few-body systems.

    cond-mat.quant-gashep-exhep-phquant-phPRA(2025)·3 citations
  33. 33*

    Low-energy theorem revisited and OPE in massless QCD

    Marco Bochicchio🇮🇹 · Elisabetta Pallante🇳🇱

    We revisit a low-energy theorem (LET) of NSVZ type in SU() QCD with massless quarks derived in [1] by implementing it in dimensional regularization. The LET relates -point correlators in the lhs to -point correlators with the extra insertion of Tr at zero momentum in the rhs. First, we demonstrate that, for -point correlators of an operator in the lhs, the LET implies that, in general, the integrated -point correlator in the rhs needs in perturbation theory an infinite additive renormalization in addition to the multiplicative one. Second, we relate the above counterterm -- that is completely fixed by the LET -- to a corresponding divergent contact term in a certain coefficient of the OPE of Tr with in the momentum representation, thus extending by means of the LET to any operator an independent argument that first appeared for =Tr in [2]. Third, we verify by direct computation that the latter divergent contact term first computed in [3] to order in perturbation theory and to all orders in [2] actually agrees with the one implied by the LET. Fourth, we evaluate the divergent contact terms for the above OPE coefficient both in the coordinate and momentum representation and discuss their relation. Fifth, we demonstrate that in the asymptotically free phase of QCD the aforementioned counterterm in the LET -- though divergent order by order in perturbation theory -- is actually finite nonperturbatively after resummation to all perturbative orders. Finally, we briefly recall the implications of the LET in the gauge-invariant framework of dimensional regularization for the perturbative and nonperturbative renormalization in large- QCD. The implications of the LET inside and above the conformal window of SU() QCD with massless quarks will appear in a forthcoming paper.

    hep-thhep-phJHEP(2024)·0 citations
  34. 34*

    Effective Potential and Vacuum Stability in the Litim-Sannino Model

    Tom Steudtner🇩🇪

    We revisit the scalar potential in the Litim-Sannino model. We compute for the first time the full quantum corrections to the classical potential and show that they significantly ameliorate the stability analysis at the UV fixed point. The quantum effective potential is computed at two-loop order and the numerical precision is further improved using resummations and parameter optimisations. As a result, we find a consistent widening of the UV conformal window across various approximations.

    hep-thhep-phJHEP(2024)·5 citations
  35. 35*

    Positivity in Amplitudes and Quantum Entanglement

    Rafael Aoude🇬🇧 · Gilly Elor🇺🇸 · Grant N. Remmen🇺🇸 · Olcyr Sumensari🇫🇷

    We explore the connection of positivity of the imaginary part of forward elastic amplitudes for perturbative scattering with consistency of the entanglement generated by the S-matrix, for states with arbitrary internal quantum numbers such as flavor. We also analyze "disentanglers," certain highly entangled initial states for which the action of the S-matrix is to decrease subsystem entanglement. As a by-product, we develop a framework based on wave packets to regularize the spacetime divergences that appear in the plane-wave derivation of the entanglement expression.

    hep-thhep-phquant-phFortsch.Phys.(2026)·41 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.