PaperPanorama

HEP Phenomenology·hep-ph

Fri·Sep 30, 2022

29 papers23 primary·6 cross-listed·reconstructed*

  1. 01*

    Sommerfeld enhancement of resonant dark matter annihilation

    Martin Beneke🇩🇪 · Stefan Lederer🇩🇪 · Kai Urban🇩🇪

    The dark matter annihilation cross section can be amplified by orders of magnitude if the annihilation occurs into a narrow resonance, or if the dark-matter particles experience a long-range force before annihilation (Sommerfeld effect). We show that when both enhancements are present they factorize completely, that is, all long-distance non-factorizable effects cancel at leading order in the small-velocity and narrow-width expansion. We then investigate the viability of ``super-resonant'' annihilation from the coaction of both mechanisms in Standard Model Higgs portal and simplified MSSM-inspired dark-matter scenarios.

    hep-phastro-ph.COPLB(2023)·20 citations
  2. 02*

    Three-loop corrections to the quark and gluon decomposition of the QCD trace anomaly and their applications

    Kazuhiro Tanaka (Juntendo Univ.)🇯🇵

    In the QCD energy-momentum tensor , the terms that contribute to physical matrix elements are expressed as the sum of the gauge-invariant quark part and gluon part. Each part undergoes the renormalization due to the interactions among quarks and gluons, although the total tensor is not renormalized thanks to conservation of energy and momentum. We show that, through the renormalization, each of the quark and gluon parts of receives a definite amount of anomalous trace contribution, such that their sum reproduces the well-known QCD trace anomaly. We provide a procedure to derive such anomalous trace contribution for each quark/gluon part to all orders in perturbation theory, and obtain the corresponding explicit formulas up to three-loop order in the scheme in the dimensional regularization. We apply our three-loop formulas of the quark/gluon decomposition of the trace anomaly to calculate the anomaly-induced mass structure of nucleons as well as pions. Another application of our three-loop formulas is a quantitative analysis for the constraints on the twist-four gravitational form factors of the nucleon, .

    hep-phnucl-thJPS Conf.Proc.(2022)·5 citations
  3. 03*

    SM extension with a gauged flavor symmetry

    Zurab Tavartkiladze🇬🇪

    An extension of the Standard Model with anomaly free flavor symmetry is studied in this paper. With this extension and the addition of the right-handed neutrino states, the solution of anomaly free charge assignments is found, which gives appealing texture zero and hierarchical Yukawa matrices. This gives us a natural understanding of the hierarchies between charged fermion masses and Cabibbo-Kobayashi-Maskawa (CKM) matrix elements. Neutrino Dirac and Majorana coupling matrices also have desirable structures leading to successful neutrino oscillations with inverted neutrino mass ordering. Other interesting implications of the presented scenario are also discussed.

    hep-phPRD(2022)·6 citations
  4. 04*

    Reconstruction of event kinematics in semi-inclusive deep-inelastic scattering using the hadronic final state and Machine Learning

    Connor Pecar🇺🇸 · Anselm Vossen🇺🇸

    Semi-inclusive deep-inelastic scattering (SIDIS) at the Electron-Ion Collider will allow for precise mapping of the 3D momentum and spin structure of nucleons and nuclei over a large kinematic region. In this contribution, we demonstrate methods utilizing the hadronic final state and scattered electron, as well as machine learning, to more reliably reconstruct the virtual photon four momentum and SIDIS kinematics across the inclusive DIS coverage at the EIC.

    hep-phhep-exPresented at DIS2022: XXIX International …·3 citations
  5. 05*

    Study of transversity GPDs from pseudoscalar mesons production at EIC of China

    S. V. Goloskokov🇷🇺 · Ya-Ping Xie🇨🇳 · Xurong Chen🇨🇳

    The exclusive and electroproduction is studied in the handbag approach based on Generalized Parton Distributions (GPDs) factorization. Predictions of and mesons are calculated for future Electron-Ion Collider of China (EicC) energy range using obtained cross sections we extract information on the transversity GPDs contributions to these processes.

    hep-phCommun.Theor.Phys.(2023)·9 citations
  6. 06*

    Statistical hadronization of b-quarks in Pb-Pb collisions at LHC energy: a case for partial equilibration of b-quarks?

    A. Andronic🇩🇪 · P. Braun-Munzinger🇩🇪 · K. Redlich🇵🇱 · J. Stachel🇩🇪

    Predictions are presented within the framework of the statistical hadronization model for integrated yields of bottomonia in Pb-Pb collisions at the LHC. We investigate the centrality dependence of production and provide predictions for a large set of still-unmeasured open-beauty hadrons.

    hep-phnucl-thActa Phys.Polon.Supp.(2023)·9 citations
  7. 07*

    Attenuation of Cosmic-Ray Up-Scattered Dark Matter

    Helena Kolesova🇳🇴

    GeV-scale dark matter particles with strong coupling to baryons evade the standard direct detection limits as they are efficiently stopped in the overburden and, consequently, are not able to reach the underground detectors. On the other hand, it has been shown that it is possible to probe this parameter space taking into account the flux of dark matter particles boosted by interactions with cosmic rays. We revisit these bounds paying particular attention to interactions of the relativistic dark matter particles in the Earth's crust. The effects of nuclear form factors, inelastic scattering and extra dependence of the cross section on transferred momentum (e.g., due to presence of light mediators) are studied and are found to be crucial for answering the question as to whether the window for GeV-scale strongly interacting dark matter is closed or not.

    hep-phastro-ph.COSciPost Phys.Proc.(2023)·4 citations
  8. 08*

    Gravitational wave signals from leptoquark-induced first order electroweak phase transitions

    Bowen Fu🇬🇧 · Stephen F. King🇬🇧

    We consider the extension of the Standard Model (SM) with scalar leptoquarks in singlet, doublet and triplet representations. Through the coupling between leptoquark and the SM Higgs field, the electroweak phase transition (EWPT) can turn into first order and consequently produce gravitational wave signals. We compute the required value of the leptoquark-Higgs for first order EWPT to happen and discuss about the possible constraint from Higgs phenomenology. Choosing some benchmarks, we present the strength of the gravitational waves produced during the leptoquark-induced first order EWPT and compare them to detector sensitivities. We find that the representations of the leptoquark can be distinguished by gravitational waves in the parameter space where first order EWPT can happen as a function of the Higgs portal coupling.

    hep-phJCAP(2023)·8 citations
  9. 09*

    Heavy Neutral Leptons Beyond Simplified Scenarios

    Gioacchino Piazza🇫🇷 · Asmaa Abada🇫🇷 · Pablo Escribano🇪🇸 · Xabier Marcano🇪🇸

    Heavy neutral leptons (HNL) constitute the building blocks of several neutrino mass generation mechanisms. Experimental searches depend on their masses and mixings with the active neutrinos, and exclusion regions in the plane of mass and mixing rely most of the time on two assumptions: the existence of HNL, which mixes dominantly with only lepton flavor. In this work we discuss how to reinterpret the limits from collider searches relaxing these assumptions, providing a simple recipe to recast the bounds in models with generic mixing patterns, and in which at least two HNLs are coupled to the active sector.

    hep-ph3 citations
  10. 10*

    Dual electroweak phase transition in the two-Higgs-doublet model with the discrete symmetry

    Vo Quoc Phong🇻🇳 · Nguyen Minh Anh🇻🇳 · Hoang Ngoc Long🇻🇳

    In this work, dual electroweak phase transition (EWPT) consisting of two phases, is carefully studied in the two-Higgs-doublet model with the discrete symmetry. The role of here is to further separate the stages of the electroweak phase transition, compared to that of the original two-Higgs-doublet model (2HDM). The strength of the electroweak phase transition in the model under consideration is large enough for the first-order EWPT, specifically . The ratio between the two vacuum expectation values (VEVs), , is proven to have no effects on the strength of the phase transition. This ratio only affects the mass domain that causes the first-order phase transition. Furthermore, in this paper we will show clearly that when studying the EWPT in models of more than one scalar field that generates masses, one needs to analyze the problem of phase transition under multiple stages. In other words, the effect of the first stage of symmetry breaking to the second one, is to simplify by suggestion that vacuum expectation value of the Higgs boson responsible for the initial stage is proportional to that of the field for the next stage.

    hep-phPRD(2023)·7 citations
  11. 11*

    Centrality dependence of multistrange baryon production in high-energy heavy-ion collisions

    G. H. Arakelyan🇦🇲 · C. Merino🇪🇸 · Yu. M. Shabelski🇷🇺

    We consider the experimental data on the production of strange Lambdas, and multistrange baryons (Xi, Omega), and antibaryons, on nuclear targets, at the energy region from SPS up to LHC, in the framework of the Quark-Gluon String Model. One remarkable result of this analysis is the significant dependence on the centrality of the collision of the experimental ratios bar(Xi)+/bar(Lambda) and bar(Omega)+/bar(Lambda) ratios in heavy-ion collisions, at SPS energies.

    hep-phEPJ Web Conf.(2022)·0 citations
  12. 12*

    Probing Early Universe Supercooled Phase Transitions with Gravitational Wave Data

    Charles Badger🇬🇧 · Bartosz Fornal🇺🇸 · Katarina Martinovic🇬🇧 · Alba Romero🇪🇸 · Kevin Turbang🇧🇪 · Huai-Ke Guo🇺🇸 · Alberto Mariotti🇧🇪 · Mairi Sakellariadou🇬🇧 · Alexander Sevrin🇧🇪 · Feng-Wei Yang🇺🇸 · Yue Zhao🇺🇸

    We investigate the reach of the LIGO/Virgo/KAGRA detectors in the search for signatures of first-order phase transitions in the early Universe. Utilising data from the first three observing runs, we derive constraints on the parameters of the underlying gravitational-wave background, focusing on transitions characterised by strong supercooling. As an application of our analysis, we determine bounds on the parameter space of two representative particle physics models. We also comment on the expected reach of third-generation detectors in probing supercooled phase transitions.

    hep-phastro-ph.COgr-qchep-thPRD(2023)·46 citations
  13. 13*

    Solar neutrino physics

    Xun-Jie Xu🇨🇳 · Zhe Wang🇨🇳 · Shaomin Chen🇨🇳

    As a free, intensive, weakly interacting, and well directional messenger, solar neutrinos have been driving both solar physics and neutrino physics developments for more than half a century. Since more extensive and advanced neutrino experiments are under construction, being planned or proposed, we are striving toward an era of precise and comprehensive measurement of solar neutrinos in the next decades. In this article, we review recent theoretical and experimental progress achieved in solar neutrino physics. We present not only an introduction to neutrinos from the standard solar model and the standard flavor evolution, but also a compilation of a variety of new physics that could affect and hence be probed by solar neutrinos. After reviewing the latest techniques and issues involved in the measurement of solar neutrino spectra and background reduction, we provide our anticipation on the physics gains from the new generation of neutrino experiments.

    hep-phastro-ph.SRhep-exnucl-thPPNP(2023)·44 citations
  14. 14*

    Dilaton Effective Field Theory

    Thomas Appelquist🇺🇸 · James Ingoldby🇮🇹 · Maurizio Piai🇬🇧

    We review and extend recent studies of dilaton effective field theory (dEFT) which provide a framework for the description of the Higgs boson as a composite structure. We first describe the dEFT as applied to lattice data for a class of gauge theories with near-conformal infrared behavior. It includes the dilaton associated with the spontaneous breaking of (approximate) scale invariance, and a set of pseudo-Nambu-Goldstone bosons (pNGBs) associated with the spontaneous breaking of an (approximate) internal global symmetry. The theory contains two small symmetry-breaking parameters. We display the leading-order (LO) Lagrangian, and review its fit to lattice data for the gauge theory with Dirac fermions in the fundamental representation. We then develop power-counting rules to identify the corrections emerging at next-to-leading order (NLO) in the dEFT action. We list the NLO operators that appear and provide estimates for the coefficients. We comment on implications for composite-Higgs model building.

    hep-phhep-latUniverse(2023)·51 citations
  15. 15*

    Sensitivity of the FACET experiment to Heavy Neutral Leptons and Dark Scalars

    Maksym Ovchynnikov🇩🇪 · Viktor Kryshtal🇺🇦 · Kyrylo Bondarenko🇮🇹

    We analyze the potential of the recently proposed experiment FACET (Forward-Aperture CMS ExTension) to search for new physics. As an example, we consider the models of Higgs-like scalars with cubic and quartic interactions and Heavy Neutral Leptons. We compare the sensitivity of FACET with that of other proposed "intensity frontier" experiments, including FASER2, SHiP, etc. and demonstrate that FACET could probe an interesting parameter space between the current constraints and the potential reach of the above mentioned proposals.

    hep-phJHEP(2023)·14 citations
  16. 16*

    Precision QCD, Hadronic Structure & Forward QCD, Heavy Ions: Report of Energy Frontier Topical Groups 5, 6, 7 submitted to Snowmass 2021

    M. Begel · S. Hoeche · M. Schmitt · H.-W. Lin · P.M. Nadolsky · C. Royon · Y-J. Lee · S. Mukherjee · C. Baldenegro · J. Campbell · G. Chachamis · F.G. Celiberto and 38 other authors

    This report was prepared on behalf of three Energy Frontier Topical Groups of the Snowmass 2021 Community Planning Exercise. It summarizes the status and implications of studies of strong interactions in high-energy experiments and QCD theory. We emphasize the rich landscape and broad impact of these studies in the decade ahead. Hadronic interactions play a central role in the high-luminosity Large Hadron Collider (LHC) physics program, and strong synergies exist between the (HL-)LHC and planned or proposed experiments at the U.S. Electron-Ion Collider, CERN forward physics experiments, high-intensity facilities, and future TeV-range lepton and hadron colliders. Prospects for precision determinations of the strong coupling and a variety of nonperturbative distribution and fragmentation functions are examined. We also review the potential of envisioned tests of new dynamical regimes of QCD in high-energy and high-density scattering processes with nucleon, ion, and photon initial states. The important role of the high-energy heavy-ion program in studies of nuclear structure and the nuclear medium, and its connections with QCD involving nucleons are summarized. We address ongoing and future theoretical advancements in multi-loop QCD computations, lattice QCD, jet substructure, and event generators. Cross-cutting connections between experimental measurements, theoretical predictions, large-scale data analysis, and high-performance computing are emphasized.

    hep-phhep-exhep-latnucl-ex+135 citations
  17. 17*

    Light thermal relics enabled by a second Higgs

    Johannes Herms🇩🇪 · Sudip Jana🇩🇪 · Vishnu P. K.🇺🇸 · Shaikh Saad🇨🇭

    Sub-GeV thermal relic dark matter typically requires the existence of a light mediator particle. We introduce the light two-Higgs-doublet portal, illustrated by a minimal UV-complete model for sub-GeV dark matter with kinematically forbidden annihilations into leptons. All new physics states in this scenario lie at or below the electroweak scale, affecting Higgs physics, the muon anomalous magnetic moment and potentially neutrino masses. Observation of radiative dark matter annihilation by future MeV gamma-ray telescopes would be key to unambiguously identify the scenario.

    hep-phSciPost Phys.Proc.(2023)·1 citation
  18. 18*

    Stable and unstable perturbations in universal scaling phenomena far from equilibrium

    Thimo Preis🇩🇪 · Michal P. Heller🇧🇪 · Jürgen Berges🇩🇪

    We study the dynamics of perturbations around nonthermal fixed points associated to universal scaling phenomena in quantum many-body systems far from equilibrium. For an N-component scalar quantum field theory in 3+1 space-time dimensions, we determine the stability scaling exponents using a self-consistent large-N expansion to next-to-leading order. Our analysis reveals the presence of both stable and unstable perturbations, the latter leading to quasi-exponential deviations from the fixed point in the infrared. We identify a tower of far-from-equilibrium quasi-particle states and their dispersion relations by computing the spectral function. With the help of linear response theory, we demonstrate that unstable dynamics arises from a competition between elastic scattering processes among the quasi-particle states. What ultimately renders the fixed point dynamically attractive is the phenomenon of a scaling instability, which is the universal scaling of the unstable regime towards the infrared due to a self-similar quasi-particle cascade. Our results provide ab initio understanding of emergent stability properties in self-organized scaling phenomena.

    hep-phcond-mat.quant-gashep-thquant-phPRL(2023)·16 citations
  19. 19*

    Remarks on the -wave masses of singly heavy mesons

    Jisi Pan🇨🇳 · Ji-Hai Pan🇨🇳

    Based on the study of the string model methods of singly heavy mesons and singly heavy baryons, we calculate the mass spectrum of -and -wave for both charm and bottom mesons. Experimentally, there are most masses spectra of -wave have been found, while the masses part of the -state is not determined. In this paper, we will use singly light quark or diquark model images and Regge trajectory models, combined with perturbation processing methods, to analyze and study the observed singly heavy mesons, further predict the unobserved mesons masses and their corresponding spin-parity quantum numbers.

    hep-ph2 citations
  20. 20*

    Complete two-loop electroweak corrections to

    Xiang Chen🇨🇳 · Xin Guan🇨🇳 · Chuan-Qi He🇨🇳 · Zhao Li🇨🇳 · Xiao Liu🇬🇧 · Yan-Qing Ma🇨🇳

    We compute the complete two-loop electroweak corrections to the Higgsstralung process at the future Higgs factory. The Feynman integrals involved in the computation are decomposed into linear combinations of a minimal set of master integrals taking advantage of the recent developments of integral reduction techniques. The master integrals are then evaluated by differential equations with boundary conditions provided by the auxiliary mass flow method. Our final result for given is expressed as a piecewise function defined by several deeply expanded power series, which has high precision and can be further manipulated efficiently. Our calculation presents the first complete two-loop electroweak corrections for processes with four external particles.

    hep-phPRD(2026)·20 citations
  21. 21*

    Towards better discrimination and improved modelling of dark-sector showers

    Andy Buckley🇬🇧 · Deepak Kar🇿🇦 · Sukanya Sinha🇿🇦

    As no evidence for classic WIMP-based signatures of dark matter have been found at the LHC, several phenomenological studies have raised the possibility of accessing a strongly-interacting dark sector through new collider-event topologies. If dark mesons exist, their evolution and hadronization procedure are currently little constrained. They could decay promptly and result in QCD-like jet structures, even though the original decaying particles are dark sector ones; they could behave as semi-visible jets; or they could behave as completely detector-stable hadrons, in which case the final state is just the missing transverse momentum. In this contribution we will introduce a study performed to explore use of jet substructure methods to distinguish dark-sector from QCD jets in the first two scenarios, using observables in a IRC-safe linear basis, and discuss ways forward for this approach to dark-matter at the LHC.

    hep-phSciPost Phys.Proc.(2024)·3 citations
  22. 22*

    Wigner 6j symbols for SU(N): Symbols with at least two quark-lines

    Judith Alcock-Zeilinger🇦🇹 · Stefan Keppeler🇩🇪 · Simon Plätzer🇦🇹 · Malin Sjodahl🇸🇪

    We study a class of SU(N) Wigner 6j symbols involving two fundamental representations, and derive explicit formulae for all 6j symbols in this class. Our formulae express the 6j symbols in terms of the dimensions of the involved representations, and they are thereby functions of N. We view these explicit formulae as a first step towards efficiently decomposing SU(N) color structures in terms of group invariants.

    hep-phhep-lathep-thmath-ph+1J.Math.Phys.(2023)·10 citations
  23. 23*

    Challenges with Internal Photons in Constructive QED

    Neil Christensen🇺🇸 · Harold Diaz-Quiroz🇺🇸 · Bryan Field🇺🇸 · Justin Hayward🇺🇸 · John Miles🇺🇸

    We find the correct spinor amplitude for a simple photon-mediated process and show that, in contrast, the result for the same process using the standard constructive techniques do not agree with Feynman diagrams when the fermions are massive. Along the way, we analyze the factor used in photon vertices, we work out the spinor shifts for massive particles when the momenta are analytically continued and we consider the large limit of the amplitudes in this paper and show that the photon-mediated process does not vanish in this limit for any choice of two of its momenta. For comparison with the photon-mediated process, we also describe two processes with external photons that are mediated by massive particles. In both cases, we show that the current techniques are sufficient and that the final results agree with Feynman diagrams. We also demonstrate that by using a massive photon in our calculations and taking the massless limit at the end, we can achieve agreement with Feynman diagrams in all the processes discussed here, including the photon-mediated amplitudes.

    hep-phhep-thNPB(2023)·17 citations
  24. 24*

    The Status of the Galactic Center Gamma-Ray Excess

    Dan Hooper🇺🇸

    The Galactic Center Gamma-Ray Excess has a spectrum, angular distribution, and overall intensity that agree remarkably well with that expected from annihilating dark matter particles in the form of a thermal relic. Previous claims that these photons are clustered on small angular scales or trace the distribution of known stellar populations once appeared to favor interpretations in which this signal originates from a large population of unresolved millisecond pulsars. More recent work, however, has overturned these conclusions, finding that the observed gamma-ray excess does {\it not} contain discernible small scale power, and is distributed with approximate spherical symmetry, not tracing any known stellar populations. In light of these results, it now appears significantly more likely that the Galactic Center Gamma-Ray Excess is produced by annihilating dark matter.

    astro-ph.HEastro-ph.COhep-phSciPost Phys.Proc.(2023)·14 citations
  25. 25*

    BRST Formalism of Weyl Conformal Gravity

    Ichiro Oda🇯🇵 · Philipp Saake🇩🇪

    We present the BRST formalism of a Weyl conformal gravity in Weyl geometry. Choosing the extended de Donder gauge-fixing condition (or harmonic gauge condition) for the general coordinate invariance and the new scalar gauge-fixing for the Weyl invariance we find that there is a Poincar-like supersymmetry as in a Weyl invariant scalar-tensor gravity in Riemann geometry. We also point out that there is a gravitational conformal symmetry in quantum gravity although there is a massive Weyl gauge field as a result of spontaneous symmetry breakdown of Weyl gauge symmetry and account for how the gravitational conformal symmetry is spontaneously broken to the Poincaré symmetry. The corresponding massless Nambu-Goldstone bosons are the graviton and the dilaton. We also prove the unitarity of the physical S-matrix on the basis of the BRST quartet mechanism.

    hep-thgr-qchep-phPRD(2022)·17 citations
  26. 26*

    The analytic structure of the Landau gauge quark propagator from Padé analysis

    Alexandre F. Falcão🇵🇹 · Orlando Oliveira🇵🇹

    The analytic structure of the 2 flavour full QCD lattice Landau gauge quark propagator is investigated with Padé approximants applied to its vector and scalar form factors. No poles at complex momentum are observed for the propagator. Moreover, there is clear evidence of a pole at real on-axis negative Euclidean momentum, i.e. for Minkowski type of momentum. %, with a positive residuum. This pole occurs at Euclidean momenta MeV and it reproduces typical quark mass values used in phenomenological effective quark models. The Padé approximant analysis also gives hints on the presence of a branch cut. Our results also show a clear correlation between the position of this pole, understood as an effective quark mass, and the pion mass that is compatible with PCAC. Slightly differences between the poles for the two quark form factors are observed which can be viewed either as a limitation of the method or as a suggestion that the quark propagator has no spectral representation.

    hep-lathep-phhep-thPRD(2022)·15 citations
  27. 27*

    Report of the Snowmass 2021 Theory Frontier Topical Group on Quantum Information Science

    Simon Catterall🇺🇸 · Roni Harnik🇺🇸 · Veronika E. Hubeny🇺🇸 · Christian W. Bauer🇺🇸 · Asher Berlin🇺🇸 · Zohreh Davoudi🇺🇸 · Thomas Faulkner🇺🇸 · Thomas Hartman🇺🇸 · Matthew Headrick🇺🇸 · Yonatan F. Kahn🇺🇸 · Henry Lamm🇺🇸 · Yannick Meurice🇺🇸 and 3 other authors

    We summarize current and future applications of quantum information science to theoretical high energy physics. Three main themes are identified and discussed; quantum simulation, quantum sensors and formal aspects of the connection between quantum information and gravity. Within these themes, there are important research questions and opportunities to address them in the years and decades ahead. Efforts in developing a diverse quantum workforce are also discussed. This work summarizes the subtopical area Quantum Information for High Energy Physics TF10 which forms part of the Theory Frontier report for the Snowmass 2021 planning process.

    quant-phhep-lathep-phhep-th34 citations
  28. 28*

    CompF5: End User Analysis Topical Group Report

    Gavin S. Davies🇺🇸 · Peter Onyisi🇺🇸 · Amy Roberts

    This report summarizes the work of the Computational Frontier topical group on end user analysis for Snowmass 2021. End User Analysis refers to the extraction of physics results from reconstructed and simulated experimental data. High energy physics experiments produce systems that perform common reconstruction, calibration, and simulation tasks, resulting in shared data samples. These detailed data samples are then reduced to create a range of analysis samples, often optimized for a particular physics topic by a trigger or data object selection. End users (analyzers) then analyze those samples to produce physics results. Community discussions converged on categorizing the end user analysis ensemble into Analysis Ecosystems, Analysis Models, Dataset Bookkeeping and Formats, Collaborative Software, and Training. We present findings and recommendations based on these key areas that impact end user analysis.

    physics.comp-phhep-exhep-lathep-ph+12 citations
  29. 29*

    Non-Gaussian Fluctuation Dynamics

    Xin An🇺🇸

    Recent progress of a general deterministic approach to the non-Gaussian fluctuation dynamics is reviewed, with an emphasis on the derivation of the fluctuation evolution equations and their phenomenological implication in heavy-ion collision experiments.

    hep-thcond-mat.stat-mechhep-phnucl-thActa Phys.Polon.Supp.(2023)·3 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.