PaperPanorama

HEP Phenomenology·hep-ph

Fri·Mar 21, 2025

24 papers14 primary·10 cross-listed·reconstructed*

  1. 01*

    Supernova production of axion-like particles coupling to electrons, reloaded

    Damiano F. G. Fiorillo🇩🇪 · Tetyana Pitik🇺🇸 · Edoardo Vitagliano🇮🇹

    We revisit the production of axion-like particles (ALPs) coupled to electrons at tree-level in a relativistic plasma. We explicitly demonstrate the equivalence between pseudoscalar and derivative couplings, incorporate previously neglected processes for the first time-namely, semi-Compton production () and pair annihilation ()-and derive analytical expressions for the bremsstrahlung () production rate, enabling a more computationally efficient evaluation of the ALP flux. Additionally, we assess uncertainties in the production rate arising from electron thermal mass corrections, electron-electron Coulomb interactions, and the Landau-Pomeranchuk-Migdal effect. The ALP emissivity is made available in a public repository as a function of the ALP mass, the temperature, and the electron chemical potential of the plasma. Finally, we examine the impact of ALP production and subsequent decays on astrophysical observables, deriving the leading bounds on ALPs coupling to electrons. At small couplings, the dominant constraints come from the previously neglected decay , except for a region of fireball formation where SN 1987A X-ray observations offer the best probe. At large couplings, bounds are dominated by the energy deposition argument, with a recently developed new prescription for the trapping regime.

    hep-phastro-ph.HEPRD(2025)·41 citations
  2. 02*

    Charmonium content of in light-cone sum rules at twist 3

    Tarik Akan🇹🇷 · Mehmet Ali Olpak🇹🇷 · Altug Ozpineci🇹🇷

    In this study, we utilize light-cone QCD sum rules at twist-3 accuracy to compute the coupling parameters of the state with and mesons. The analysis reveals that the observed meson incorporates significant amounts of both charmonium and molecular components. The interplay between these components highlights the exotic nature of . Furthermore, implications for a possible mixing between the state and a potential molecule is discussed. These findings contribute to the understanding of exotic hadron states and their intricate internal structures.

    hep-phEPJC(2025)·0 citations
  3. 03*

    Generic two-loop results for trilinear and quartic scalar self-interactions

    Henning Bahl🇩🇪 · Johannes Braathen🇩🇪 · Martin Gabelmann🇩🇪 · Sebastian Paßehr🇩🇪

    Reconstructing the shape of the Higgs potential realised in Nature is a central part of the physics programme at the LHC and future colliders. In this context, accurate theoretical predictions for trilinear and quartic Higgs couplings are becoming increasingly important. In this paper, we present results that enable significant progress in the automation of these calculations at the two-loop level in a wide range of models. Specifically, we calculate the generic two-loop corrections for scalar n-point functions with n<=4 assuming that all external scalars are identical. Working in the zero-momentum approximation, we express the results in terms of generic couplings and masses. Additionally, by exploiting permutation invariances, we reduce the number of Feynman diagrams appearing to a substantially smaller set of basis diagrams. To ease the application of our setup, we also provide routines that allow to map our generic results to scalar two-loop amplitudes generated with the package FeynArts. We perform a series of calculations to cross-check our results with existing results in the literature. Moreover, we present new two-loop results for the trilinear Higgs coupling in the general singlet extension of the Standard Model. We also present the public Python package Tintegrals, which allows for fast and stable evaluations of all relevant two-loop integrals with vanishing external momenta.

    hep-phJHEP(2025)·20 citations
  4. 04*

    Angular coefficients of the Drell-Yan process across different rapidity and kinematical ranges

    Valery E. Lyubovitskij🇨🇱 · Alexey S. Zhevlakov🇷🇺 · Iurii A. Anikin🇷🇺

    We present comprehensive analysis of the angular structure of the Drell-Yan process at different rapidity and kinematical ranges using data of the ATLAS, LHCb, and CMS Collaborations at CERN LHC. From theory side we discuss next-to-leading order calculations in the framework of the collinear perturbative QCD and geometrical method.

    hep-phPRD(2025)·5 citations
  5. 05*

    Improved Constraints on Pion Fragmentation Functions from Simulated Electron-Ion Collider Data

    Maryam Soleymaninia🇮🇷 · Hamzeh Khanpour🇮🇷 · Majid Azizi🇮🇷 · Hadi Hashamipour🇮🇹

    We present a quantitative assessment of the anticipated impact of future Electron-Ion Collider (EIC) measurements on the extraction of parton-to-pion fragmentation functions (FFs). Our analysis combines simulated semi-inclusive deep-inelastic scattering (SIDIS) pseudo-data at EIC energies of 45 GeV and 140 GeV with existing single-inclusive electron-positron annihilation (SIA) and SIDIS experimental data. The pion fragmentation functions are determined at next-to-leading-order (NLO) accuracy using a perturbative QCD framework and a neural network parametrization. Uncertainties are rigorously estimated through Monte Carlo sampling, accounting for both experimental errors and variations in input parton distribution functions. Our results demonstrate that incorporating EIC pseudo-data reduces their uncertainties, especially at medium to large momentum fractions (). This improvement is particularly pronounced for the gluon and selected quark FFs, highlighting the substantial role that EIC measurements will play in achieving high-precision extractions of FFs and informing future experimental and theoretical developments in collider physics.

    hep-phPRD(2025)·3 citations
  6. 06*

    NLO corrections and factorization for transverse single-spin asymmetries

    Daniel Rein🇩🇪 · Marc Schlegel🇩🇪 · Patrick Tollkühn🇩🇪 · Werner Vogelsang🇩🇪

    We present next-to-leading order QCD corrections for the cross sections for , with transversely polarized initial protons. These cross sections are known to be power-suppressed in QCD and probe twist-3 parton correlation functions in the proton. Our calculation exhibits the full complexity of a perturbative QCD analysis beyond leading power, involving in particular various derivatives of the parton correlation functions. We demonstrate that collinear factorization for these single-spin observables holds at one loop. We also present exploratory phenomenological results for the NLO single-spin asymmetry in and compare to data from the HERMES experiment.

    hep-phhep-exPRL(2025)·8 citations
  7. 07*

    Inclusive photoproduction in ultraperipheral collisions

    Patricia Gimeno-Estivill🇫🇮 · Tuomas Lappi🇫🇮 · Heikki Mäntysaari🇫🇮

    We compute the differential cross section for inclusive production in ultraperipheral collisions within the Color Glass Condensate framework. Our predictions are found to be in relatively good agreement with the CMS data at small transverse momentum, which is the region of validity of our approach. Furthermore, we quantify saturation effects by a nuclear modification ratio for photoproduction and examine both analytically and numerically the collinear factorization limit of the differential photoproduction cross section.

    hep-phnucl-thPRD(2025)·12 citations
  8. 08*

    Transverse Nucleon Single-Spin Asymmetry for Single-Inclusive Hadron and Jet Production at NLO Accuracy

    Daniel Rein🇩🇪 · Marc Schlegel🇩🇪 · Patrick Tollkühn🇩🇪 · Werner Vogelsang🇩🇪

    We investigate the single-spin asymmetry for the single-inclusive production of hadrons and jets in collisions of transversely polarized nucleons and unpolarized leptons, . We compute the spin-dependent cross section within collinear twist-3 factorization in perturbative QCD at next-to-leading order (NLO) accuracy. In this approach, multiparton correlations generate a non-vanishing effect. For the present paper, we focus on correlations in the nucleon initial-state rather than in the fragmentation process. We explicitly verify that collinear twist-3 factorization is valid at the one-loop level. Our analytical results show that at NLO the relevant multiparton correlation functions in the nucleon are probed on their full support in momentum fractions. Our numerical analysis for collisions at the Electron-Ion Collider indicates that the NLO corrections can be large and are sensitive to the functional form of the twist-3 correlation functions.

    hep-phhep-exPRD(2025)·8 citations
  9. 09*

    Effects of tau-neutrino detection on non-standard interactions at DUNE with a short discussion on the nature of neutrino mixing

    Xin Yue Yu🇨🇦 · Zishen Guan🇨🇦 · William Dallaway🇨🇦 · Ushak Rahaman🇨🇦 · Nikolina Ilic🇨🇦

    In this paper, we investigate the effects of and detection at the DUNE far detector on the experiment's sensitivity to Non-Standard Interactions (NSI) in neutrino propagation. We show that the strongest observable NSI effect in the and appearance probabilities arises from . We have studied the hierarchy sensitivity, CP violation sensitivity and octant sensitivity of DUNE from and appearance channels in presence of NSI. We have also studied the detection sensitivity of NSI phases and the future constaints on NSI parameters from the tau neutrino appearance channels in DUNE. Additionally, we examine the role of detection in constraining the unitary nature of the PMNS matrix. These studies emphasize the importance of incorporating detection in long-baseline neutrino experiments such as DUNE.

    hep-phhep-exhep-thJHEP(2025)·3 citations
  10. 10*

    Unveiling the sea: universality of the transverse momentum dependent quark distributions at small

    Paul Caucal🇫🇷 · Marcos Guerrero Morales🇺🇸 · Edmond Iancu🇫🇷 · Farid Salazar🇺🇸 · Feng Yuan🇺🇸

    Within the Colour Glass Condensate effective theory, we demonstrate that back-to-back dijet correlations in dilute-dense collisions involving a small- quark from the nuclear target can be factorised in terms of universal transverse momentum dependent distributions (TMDs) for the sea quarks. Two building blocks are needed to construct all these TMDs at the operator level: the sea quark TMD operator which appears in semi-inclusive Deep-Inelastic Scattering (SIDIS) or in the Drell-Yan process and the elastic -matrix for a quark-antiquark dipole. Compared to SIDIS, the saturation effects are stronger for dijet production in forward proton-nucleus collisions, due to additional scattering in the initial and final state, effectively resulting in a larger value for the nuclear saturation momentum.

    hep-phnucl-thPLB(2026)·13 citations
  11. 11*

    Emerging Excess Consistent with a Narrow Resonance at 152 GeV in High-Energy Proton-Proton Collisions

    Srimoy Bhattacharya🇿🇦 · Benjamin Lieberman🇿🇦 · Mukesh Kumar🇿🇦 · Andreas Crivellin🇨🇭 · Yaquan Fang🇨🇳 · Rachid Mazini🇿🇦 · Bruce Mellado🇿🇦

    The Higgs boson discovery at the Large Hadron Collider (LHC) at CERN confirmed the existence of the last missing particle of the Standard Model (SM). The existence of new fundamental constituents of matter beyond the SM is of great importance for our understanding of Nature. In this context, indirect (non-resonant) indications for new scalar bosons were found in the data from the first run of the LHC, taken between 2010 and 2012 at CERN: an excess in the invariant mass of muon-electron pairs, consistent with a new Higgs boson () with a mass of GeV. Other processes with multiple leptons in the final state, moderate missing energy, and possibly (bottom quark) jets exhibit deviations from the SM predictions. These anomalies can be explained within a simplified model in which a new heavy Higgs boson decays into two lighter Higgses . This lighter Higgs subsequently decays to bosons, bottom quarks and has also an invisible decay mode. Here, we demonstrate that using this model we can identify narrow excesses in di-photon and -photon spectra around 152 GeV. By incorporating the latest measurements of di-photons in association with leptons, we obtain a combined global significance of . This represents the highest significance ever reported for an excess consistent with a narrow resonance beyond the SM (BSM) in high-energy proton-proton collision data at the LHC. Such findings have the potential to usher in a new era in particle physics - the BSM epoch - offering crucial insights into unresolved puzzles of nature.

    hep-ph13 citations
  12. 12*

    Lepton number violating and conserving heavy baryon four-body decays in the presence of two almost degenerate heavy neutrinos

    Fabiola Fortuna🇲🇽 · Gerardo Hernández-Tomé🇲🇽 · Diego Portillo-Sánchez🇲🇽 · Genaro Toledo🇲🇽

    We study the four-body heavy baryon decay, including two leptons in the final state, of the form , which can be either a lepton number conserving (LNC) or a lepton number violating (LNV) process (where , and are baryons, pseudoscalar mesons and leptons, respectively), including all kinematic allowed lepton pair possibilities. We work beyond the simplified assumption of a single heavy Majorana neutrino mixing with the active sector, considering potential interference effects when including two nearly degenerate heavy Majorana neutrinos. Particularly, we provide a first estimate of the decay channels involving different flavors for the external leptons (e.g., muon-tau), and elaborate on the interference pattern due to leptons exchange. We show that the results for the two heavy almost degenerate neutrinos can be recast into a single Majorana neutrino, and exhibit the features for both the LNC and LNV scenarios. We determine the potential exclusion region for the mass and heavy-light mixing parameters, of the neutrinos driving the decay, including finite size detector effects, and compare them with those from direct searches and and meson decays. We also obtain the Branching ratio as a function of the heavy neutrino mass for the current upper limit of the heavy-light mixings.

    hep-phPRD(2025)·2 citations
  13. 13*

    Open String Axiverse

    Rudin Petrossian-Byrne🇮🇹 · Giovanni Villadoro🇮🇹

    Localized charged fields are a general feature of many realistic string compactifications. In four dimensions they can lead to a multitude of perturbatively-exact global symmetries. If spontaneously broken, they generate a new axiverse compatible with post-inflationary evolutions.

    hep-phhep-thJHEP(2025)·41 citations
  14. 14*

    Efficient use of quantum computers for collider physics

    Christian W. Bauer🇺🇸

    Most observables at particle colliders involve physics at a wide variety of distance scales. Due to asymptotic freedom of the strong interaction, the physics at short distances can be calculated reliably using perturbative techniques, while long distance physics is non-perturbative in nature. Factorization theorems separate the contributions from different scales scales, allowing to identify the pieces that can be determined perturbatively from those that require non-perturbative information, and if the non-perturbative pieces can be reliably determined, one can use experimental measurements to extract the short distance effects, sensitive to possible new physics. Without the ability to compute the non-perturbative ingredients from first principles one typically identifies observables for which the non-perturbative information is universal in the sense that it can be extracted from some experimental observables and then used to predict other observables. In this paper we argue that the future ability to use quantum computers to calculate non-perturbative matrix elements from first principles will allow to make predictions for observables with non-universal non-perturbative long-distance physics.

    hep-phhep-latquant-phJHEP(2025)·27 citations
  15. 15*

    A low-redshift preference for an interacting dark energy model

    Yuejia Zhai🇬🇧 · Marco de Cesare🇮🇹 · Carsten van de Bruck🇬🇧 · Eleonora Di Valentino🇬🇧 · Edward Wilson-Ewing🇨🇦

    We explore an interacting dark sector model in trace-free Einstein gravity where dark energy has a constant equation of state, , and the energy-momentum transfer potential is proportional to the cold dark matter density. Compared to the standard CDM model, this scenario introduces a single additional dimensionless parameter, , which determines the amplitude of the transfer potential. Using a combination of \textit{Planck} 2018 Cosmic Microwave Background (CMB), DESI 2024 Baryon Acoustic Oscillation (BAO), and Pantheon+ Type Ia supernovae (SNIa) data, we derive stringent constraints on the interaction, finding to be of the order of . While CMB and SNIa data alone do not favor the presence of such an interaction, the inclusion of DESI data introduces a mild preference for an energy-momentum transfer from dark matter to dark energy. This preference is primarily driven by low-redshift DESI BAO measurements, which favor a slightly lower total matter density compared to CMB constraints. Although the interaction remains weak and does not significantly alleviate the and tensions, our results highlight the potential role of dark sector interactions in late-time cosmology.

    astro-ph.COgr-qchep-phJCAP(2025)·34 citations
  16. 16*

    Search for the radiative leptonic decay using Deep Learning

    BESIII Collaboration: M. Ablikim · M. N. Achasov · P. Adlarson · X. C. Ai · R. Aliberti · A. Amoroso · Q. An · Y. Bai · O. Bakina · Y. Ban · H.-R. Bao · V. Batozskaya and 692 other authors

    Using 20.3 of annihilation data collected at a center-of-mass energy of 3.773 with the BESIII detector, we report an improved search for the radiative leptonic decay . An upper limit on its partial branching fraction for photon energies was determined to be at 90\% confidence level; this excludes most current theoretical predictions. A sophisticated deep learning approach, which includes thorough validation and is based on the Transformer architecture, was implemented to efficiently distinguish the signal from massive backgrounds.

    hep-exhep-phCPC(2025)·5 citations
  17. 17*

    Quantum Chebyshev Probabilistic Models for Fragmentation Functions

    Jorge J. Martínez de Lejarza🇪🇸 · Hsin-Yu Wu🇬🇧 · Oleksandr Kyriienko🇬🇧 · Germán Rodrigo🇪🇸 · Michele Grossi🇨🇭

    Quantum generative modeling is emerging as a powerful tool for advancing data analysis in high-energy physics, where complex multivariate distributions are common. However, efficiently learning and sampling these distributions remains challenging. We propose a quantum protocol for a bivariate probabilistic model based on shifted Chebyshev polynomials, trained as a circuit-based representation of two correlated variables, with sampling performed via quantum Chebyshev transforms. As a key application we study fragmentation functions (FFs) of charged pions and kaons from single-inclusive hadron production in electron-positron annihilation. We learn the joint distribution of momentum fraction and energy scale , and infer their correlations from the entanglement structure. Building on the generalization capabilities of the quantum model and extended register architecture, we perform fine-grid multivariate sampling for FF dataset augmentation. Our results highlight the growing potential of quantum generative modeling to advance data analysis and scientific discovery in high-energy physics.

    quant-phhep-phCommun.Phys.(2025)·9 citations
  18. 18*

    Super-Higher-Form Symmetries

    P. A. Grassi🇨🇭 · S. Penati🇮🇹

    We generalize the study of higher-form-symmetries to theories with supersymmetry. Using a supergeometry formulation, we find that ordinary higher-form-symmetries nicely combine with supersymmetry to give rise to a much larger spectrum of topological conserved (super)currents. These can be classified as a supersymmetric version of Chern-Weil symmetries, and a brand new set of geometric-Chern-Weil symmetries whose generators are constructed using invariant differential forms in super-manifolds. For N=1 super-Maxwell theory in various dimensions, we build the topological operators generating these super-higher-form symmetries and construct defects carrying non-trivial charges. Notably, the charge is proportional to the super-linking number between the super-hypersurface supporting the symmetry generator and the one supporting the defect.

    hep-thhep-phmath-phmath.MPJHEP(2025)·3 citations
  19. 19*

    On the finite basis of two-loop `t Hooft-Veltman Feynman integrals

    Piotr Bargiela🇨🇭 · Tong-Zhi Yang🇨🇭

    In this work, we investigate the finite basis topologies of two-loop dimensionally regularized Feynman integrals in the `t Hooft-Veltman scheme in the Standard Model. We present a functionally distinct finite basis of Master Integrals which spans the whole transcendental space of all two-loop Feynman integrals with external momenta in four dimensions. We also indicate that all the two-loop Master Integrals, in an appropriate basis, with more than 8 denominators do not contribute to the finite part of any two-loop scattering amplitude. In addition, we elaborate on the application of the `t Hooft-Veltman decomposition to improve the performance of numerical evaluation of Feynman integrals using AMFlow and DCT packages. Moreover, we analyze the spectrum of special functions and the corresponding geometries appearing in any two-loop scattering amplitude. Our work will allow for a reduction in the computational complexity required for providing high-precision predictions for future high-multiplicity collider observables, both analytically and numerically.

    hep-thhep-phJHEP(2025)·6 citations
  20. 20*

    Acceptance dependence of factorial cumulants, long-range correlations, and the antiproton puzzle

    Adam Bzdak🇵🇱 · Volker Koch🇺🇸 · Volodymyr Vovchenko🇺🇸

    We analyze joint factorial cumulants of protons and antiprotons in relativistic heavy-ion collisions and point out that they obey the scaling as a function of acceptance when only long-range correlations are present in the system, such as global baryon conservation and volume fluctuations. This hypothesis can be directly tested experimentally without the need for corrections for volume fluctuations. We show that if correlations among protons and antiprotons are driven by global baryon conservation and volume fluctuations only, the equality holds for large systems created in central collisions. We point out that the experimental data of the STAR Collaboration from phase I of RHIC beam energy scan are approximately consistent with the scaling , but the normalized antiproton correlations are stronger than that of protons, . Existing theoretical baselines, based on global baryon conservation and volume fluctuations, cannot explain the data, to which we refer as the antiproton puzzle. We also discuss high-order factorial cumulants which can be measured with sufficient precision within phase II of RHIC-BES.

    nucl-thhep-phnucl-exPRC(2025)·9 citations
  21. 21*

    Apparent and a Lower from Dark Axion and Dark Baryons Interactions

    Justin Khoury🇺🇸 · Meng-Xiang Lin🇺🇸 · Mark Trodden🇺🇸

    We show that a simple coupling between dark energy and dark matter can simultaneously address two distinct hints at new physics coming from cosmological observations. The first is the recent evidence from the DESI project and supernovae observations that the dark energy equation of state~ is evolving over cosmic time from an earlier value that is~ to a present-day value~. The second observation is the so-called~ tension, describing the suppression of the growth of matter overdensities compared to that expected in the~CDM model. We propose a stable, technically natural particle physics implementation of this idea, in which dark matter consists of dark baryons in a strongly-coupled hidden sector, and the dark energy field is the associated dark axion. The time-variation of the dark matter mass results in an effective dark energy equation of state that exhibits a phantom crossing behavior consistent with recent results. It also results in a slight delay in matter-radiation equality, which suppresses the overall growth of density perturbations.

    astro-ph.COgr-qchep-phhep-thPRL(2025)·120 citations
  22. 22*

    Analytical Mechanics and Field Theory

    Tomas Brauner🇳🇴

    Lecture notes for a one-semester master-level course on analytical mechanics and classical field theory, covering: 0 Mathematical Introduction, 1 Lagrangian Mechanics, 2 Application: Motion in Central Fields, 3 Hamiltonian Mechanics, 4 Application: Oscillations of Mechanical Systems, 5 Application: Relativistic Mechanics, 6 Geometry of Classical Mechanics, 7 Application: Dynamics of Rigid Bodies, 8 Lagrangian and Hamiltonian Mechanics of Continuous Systems, 9 Application: Elasticity of Solids, 10 Symmetries and Conservation Laws, 11 Application: Fluid Dynamics, 12 Application: Electrodynamics

    physics.class-phhep-ph0 citations
  23. 23*

    Dynamically induced spin-2 mass in a Weyl-invariant framework

    Ioannis D. Gialamas🇪🇪 · Kyriakos Tamvakis🇬🇷

    We combine the ghost-free bimetric theory of gravity with the concept of local Weyl invariance, realized in the framework of Einstein-Cartan gravity. The gravitational sector, characterized by two independent metrics and two independent connections, is coupled to a scalar field that can in principle develop a non-vanishing expectation value through radiative corrections. The spectrum of the model, apart from the massless standard graviton and a pair of axion-like pseudoscalars, associated with the presence of the Holst invariants in the action, includes an additional spin- state of a non-vanishing Fierz-Pauli mass proportional to the scalar field vacuum expectation value. We analyze the phenomenology of the model and specify the conditions under which the massive spin- state could be a primary dark matter candidate.

    hep-thgr-qchep-phPRD(2025)·6 citations
  24. 24*

    Looking for the {\gamma}-Ray Cascades of the KM3-230213A Neutrino Source

    Milena Crnogorčević🇸🇪 · Carlos Blanco🇺🇸 · Tim Linden🇸🇪

    The extreme energy of the KM3-230213A event could transform our understanding of the most energetic sources in the Universe. However, it also reveals an inconsistency between the KM3NeT detection and strong IceCube constraints on the ultra-high energy neutrino flux. The most congruous explanation for the KM3NeT and IceCube data requires KM3-230213A to be produced by a (potentially transient) source fortuitously located in a region where the KM3NeT acceptance is maximized. In hadronic models of ultra-high-energy neutrino production, such a source would also produce a bright {\gamma}-ray signal, which would cascade to GeV--TeV energies due to interactions with extragalactic background light. We utilize the {\gamma}-Cascade package to model the spectrum, spatial extension, and time-delay of such a source, and scan a region surrounding the KM3NeT event to search for a consistent {\gamma}-ray signal. We find no convincing evidence for a comparable \textit{Fermi}-LAT source and place constraints on a combination of the source redshift and the intergalactic magnetic field strength between the source and Earth.

    astro-ph.HEhep-phJCAP(2025)·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.