PaperPanorama

Nuclear Theory·nucl-th

Tuesday·September 30, 2025

24 papers14 primary·10 cross-listed

  1. 01

    [Submitted on 26 Sept 2025]

    Regularized Lednicky-Lyuboshitz formula for higher partial waves in femtoscopy

    Koichi Murase · Tetsuo Hyodo

    Femtoscopy is one of the promising experimental approaches to put constraints on interactions between various species of hadrons from the momentum correlation functions measured in high-energy nuclear collision experiments. The Koonin-Pratt and Lednicky-Lyuboshitz formulae provide useful expressions of the correlation functions and have been widely used to analyze the experimental data based on the assumption that the effect of higher partial waves is negligible. Those formulae can be generalized for higher partial waves, but the generalized Lednicky-Lyuboshitz formula produces wrong results due to a singular behavior of the asymptotic wave function at the origin. In this study, we attempt to solve the problem by regularizing the generalized Lednicky-Lyuboshitz formula with a cutoff and validate it using the Koonin-Pratt formula as a reference. We also show the relationship between the cutoff in the regularized Lednicky-Lyuboshitz and the effective-range correction in the original Lednicky-Lyuboshitz formula. Using the obtained formula, we investigate the source-size dependence, the validity of the effective range expansion, and the cutoff dependence of the correlation function. We also discuss the interaction dependence using the heatmap as a function of the scattering-length parameter and the momentum .

    Comments:
    15 pages, 12 figures, 2 tables
    Subjects:
    Nuclear Theory (nucl-th); High Energy Physics — Phenomenology (hep-ph)
    arXiv:
    2509.22844 [pdf]
    2 citations
  2. 02

    [Submitted on 27 Sept 2025]

    Exploring parameter dependence of heavy-flavor dynamics in small collision systems

    Grace Pang🇺🇸

    Observations from high-multiplicity proton-lead (-Pb) collisions indicate that small systems may exhibit collective behavior in both heavy and light hadrons. This work investigates the roles of initial- and final-state interactions in shaping the nuclear modification factor and elliptic flow of mesons measured in -Pb collisions. Initial-state effects, including the Cronin and shadowing effects, are considered in the heavy-quark initial conditions, while final-state interactions are simulated through Langevin evolution combined with the coalescence model of hadronization. Different initial geometries attributed to fluctuations in the medium's energy density are parametrized and translated into the momentum anisotropies of both light and heavy quarks. The corresponding and of D mesons in 8.16 TeV -Pb collisions are calculated under different assumptions for the final-state interactions. Assuming that the initial-state effects only modify the transverse momentum spectra without altering the azimuthal distribution of heavy quarks, the measured of D mesons can be qualitatively reproduced by the combined influence of initial- and final-state effects. However, the observed cannot be accounted for by final-state interactions alone. These results suggest that additional contributions to azimuthal anisotropies of heavy quarks originating from initial-state effects are required to explain the experimentally observed .

    Subjects:
    Nuclear Theory (nucl-th); High Energy Physics — Phenomenology (hep-ph)
    arXiv:
    2509.23081 [pdf]
    PRC(2025)·0 citations
  3. 03

    [Submitted on 27 Sept 2025]

    Ab initio study of island of inversion in odd- nuclei: Structure of Mg

    Subhrajit Sahoo · Praveen C. Srivastava

    We study the island of inversion region in the odd- Ne and Mg isotopes from the fundamental nuclear forces based on chiral two- and three-nucleon potentials. The state-of-the-art \textit{ab initio} valence space in medium similarity renormalization method was used for this purpose. Our study focuses on the evolution of single-particle states and discusses their transition into the island of inversion through particle-hole excitations across the shell gap. The computed low-lying states and magnetic moments are in good agreement with the experimental data. We presented the rotational band structures, established via transitions, in Mg and Mg, which emerge from both normal and intruder configurations at low excitation energies. Our results suggest the presence of weak, moderate, and strongly prolate-deformed configurations at low energy in both isotopes. The present work offers valuable insights into the configurations and shapes of low-lying states in nuclei within the island of inversion, enhancing our understanding of the structures of exotic nuclei from first principles.

    Comments:
    10 pages, 9 figures
    Subjects:
    Nuclear Theory (nucl-th); Nuclear Experiment (nucl-ex)
    arXiv:
    2509.23354 [pdf]
    PRC(2025)·5 citations
  4. 04

    [Submitted on 28 Sept 2025]

    Microscopic study of the asymptotic behavior of the reduced width amplitude in Li and Be

    H. J. Zhu · M. J. Lyu · Q. Zhao · Z. Cheng · J. Q. Tian · M. Kimura · T. Myo · H. Horiuchi · H. Toki · M. Isaka · H. Takemoto · Akinobu Doté · N. Wan

    We investigate the effects of different basis model spaces on the calculation of reduced width amplitude (RWA) and asymptotic normalization coefficient (ANC) for the Li and Be nuclei. The two-cluster model (He) and three-cluster model () with the generator coordinates method (GCM) are applied to calculate the wave function of Li and Be. Specifically, the model space for the three-cluster model is constructed upon a sufficiently broad space of two-cluster configuration bases by further including three-cluster configuration bases. We compare the impact on the results from two basis sets for these added three-cluster bases: one with a compact and one with a broad spatial distribution. The final results reveal that the two-cluster model cannot accurately reproduce the binding energies of Li and Be, and tends to overestimate their ANCs. Regarding the calculations with the three-cluster model, while the two basis sets do not give significant differences in energy or energy spectrum, the basis set with a compact model space fails to describe the asymptotic behavior of the RWA adequately. This introduces excessive uncertainty into the ANC calculation. In the end, we conclude that when calculating ANC via a microscopic framework, particular attention must be paid to ensuring sufficient model space, especially for the components describing the breakup channels. This approach provides ANC values for Li and Be that agree well with experimental results.

    Comments:
    8 pages, 6 figures. Submitted to Physical Review C
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.23613 [pdf]
    PRC(2026)·1 citation
  5. 05

    [Submitted on 28 Sept 2025]

    Regulator constraints for the perturbative renormalizability of attractive triplets

    Manuel Pavon Valderrama🇨🇳

    Nuclear effective field theory organizes the calculation of observables as a power series in terms of the ratio of soft and hard momentum scales. The rigorous implementation of this idea requires a mixture of perturbative and non-perturbative methods: on the one hand, nuclei are bound states that require the iteration of part of the nuclear potential, while on the other corrections that are small in the aforementioned power series should be perturbative in principle. Recently, it has been noted that these corrections are not cutoff independent as there are a set of exceptional cutoffs for which the couplings cannot be determined, as exemplified with the subleading order phase shifts in two-nucleon scattering. Yet, here it is shown by means of concrete calculations that exceptional cutoffs are a regulator-dependent feature. There exists a well-defined limit when the cutoff is removed, which implies that not every regulator choice (understood not only as the regulator itself, but in tandem with renormalization conditions) is acceptable within the effective field theory framework. The practical implications are minor, though: except if one is trying to explicitly probe the cutoff independence of the theory, most sensible regulator and cutoff choices are compatible with the renormalized limit within truncation errors.

    Comments:
    25 pages, 12 figures, corresponds to accepted version in PRC
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.23855 [pdf]
    PRC(2025)·7 citations
  6. 06

    [Submitted on 28 Sept 2025]

    New ab initio constrained extended Skyrme equations of state for simulations of neutron stars, supernovae and binary mergers: II. Thermal response in the suprasaturation density domain

    Adriana R. Raduta🇷🇴 · Mikhail V. Beznogov🇷🇴

    Numerical simulations of core-collapse supernovae, mergers of binary neutron stars and formation of stellar black holes, which employed standard Skyrme interactions, established clear correlations between the evolution of these processes, characteristics of the hot compact objects, as well as neutrino and gravitational wave signals, and the value of effective nucleon mass at the saturation density. Unfortunately, the density dependence of the effective mass of nucleons in these models does not align with the predictions of ab initio models with three body forces. In this work, we investigate the thermal response for a set of extended Skyrme interactions that feature widely different density dependencies of the effective mass of the nucleons. Thermal contributions to the energy density and pressure are studied along with a few thermal coefficients over wide domains of density, temperature and isospin asymmetry, relevant for the physics of hot compact objects. For some of the effective interactions, the thermal pressure is negative at high densities. This results in a situation where hot compact stars can support less mass before collapsing into a black hole compared to their cold counterparts. Moreover, the higher the temperature, the lower the maximum mass that the hot star can support.

    Comments:
    12 pages, 13 figures
    Subjects:
    Nuclear Theory (nucl-th); High Energy Astrophysical Phenomena (astro-ph.HE)
    arXiv:
    2509.23910 [pdf]
    Astron.Astrophys.(2026)·2 citations
  7. 07

    [Submitted on 29 Sept 2025]

    Properties of hyperons in nuclear matter from chiral hyperon-nucleon interactions at next-to-next-to-leading order

    Asanosuke Jinno🇯🇵 · Johann Haidenbauer🇩🇪 · Ulf-G. Meißner🇨🇳

    The and single-particle potentials in infinite nuclear matter are analyzed within a recently established chiral hyperon-nucleon () interaction up to NLO in combination with an nucleon-nucleon interaction derived in the same scheme. The self-consistent Brueckner-Hartree-Fock method with the continuous choice of the single-particle potential is employed. It is found that the single-particle potential is comparable to the results achieved with the NLO interaction from 2019. The resulting potential becomes more attractive compared to the previous NLO results due to the constraint from the recent differential cross section data measured in the J-PARC E40 experiment. An estimate of the theoretical uncertainty of the single-particle potentials is provided in terms of the truncation error in the chiral expansion.

    Comments:
    21 pages, 14 figures, 6 tables, corrected typo, published by PRC
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.24459 [pdf]
    PRC(2025)·4 citations
  8. 08

    [Submitted on 29 Sept 2025]

    Effective -decay rates of -process waiting points in realistic stellar environments

    Qi-Ye Hu · Long-Jun Wang · Yang Sun

    Reliable nuclear weak rates are key inputs for understanding the origin of heavy elements and constraining the environments of the corresponding stellar nucleosynthesis. We present the effective stellar -decay rates of the -process waiting-point nuclei in realistic stellar environments with high temperature, high density and strong magnetic field. Both allowed and first-forbidden transitions are considered, and transitions from the low-lying states of parent nuclei due to the thermal population are taken into account properly. The stellar -decay rates of the waiting points are not sensitive to stellar temperature, while those of the waiting points increase rapidly with stellar temperature. With the increase of stellar density, the electron chemical potential increases accordingly, which leads to reduction of the stellar -decay rates. Besides, the stellar -decay rates are found to increase rapidly with the magnetic field when G. Depending on the stellar temperature, density and magnetic field, the rates may vary by several orders of magnitude, which indicates that dynamic -decay rates for corresponding stellar conditions may be indispensable inputs for understanding the -process nucleosynthesis.

    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.24536 [pdf]
    0 citations
  9. 09

    [Submitted on 29 Sept 2025]

    Many-body correlations as the origin of Gamow-Teller quenching in nuclear -decay

    Hao Zhou · Long-Jun Wang · Yang Sun

    The longstanding quenching problem of Gamow-Teller (GT) strength in nuclear -decay is attributed to missing contributions in the transition operator and/or incomplete nuclear correlations in the many-body wavefunction. Recent studies have predominantly emphasized operator renormalization, including chiral two-body currents, while the effects of many-body correlations--especially in heavy open-shell nuclei--remain underappreciated. We present a large-configuration shell-model calculation that incorporates chiral two-body weak current and treats both mechanisms on equal footing. Taking the neutrinoless double -decay candidate Ge as an example, we demonstrate that strong nuclear correlations drive a substantial portion of GT strength to high excitation energies, leading to a pronounced suppression of low-energy strength responsible for the apparent quenching. We identify that the quenching originates mainly from deformation, cross-shell correlations, and mixing among densely-spaced highly excited states. In contrast, the chiral two-body current contributes only a modest reduction, depending on the coupling constants employed. Our results thus suggest many-body correlations as the primary origin of GT quenching and provide a unified microscopic explanation for this phenomenon in nuclear -decay.

    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.24542 [pdf]
    2 citations
  10. 10

    [Submitted on 29 Sept 2025]

    Anomaly in first-forbidden transitions of Lu

    Jing-Wen Ran · Long-Jun Wang

    Lu is the key nucleus for understanding the evolution of planetary bodies in the solar system, and the temperature and nucleosynthesis of the process, due to its very long terrestrial half-life years. The very long half-life is caused by two anomalous first-forbidden transitions from the state with extremely large comparative half-life log which have never been appeared in other cases of the existing nuclear databases. We analyze the underlying mechanism and reason for the anomaly in first-forbidden transitions of Lu for the first time, which is based on the projected shell model. It is found that the possible -forbidden nature is indispensable for describing the two extremely weak first-forbidden transitions, and the transition strengths are very sensitive to the detailed configuration mixing and mixing in the nuclear wave functions. The half-life of the state is calculated to be years.

    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.24549 [pdf]
    PLB(2026)·0 citations
  11. 11

    [Submitted on 29 Sept 2025]

    Transport properties of nuclear matter from anomalous fission yields

    Karl-Heinz Schmidt🇩🇪 · Christelle Schmitt🇫🇷 · Andreas Heinz🇸🇪

    In nuclear fission, a heavy nucleus splits into two fragments, driven by the Coulomb repulsion between the positively charged protons. The fission process is governed by the potential energy and basic transport properties of nuclear matter like inertial mass and viscosity. Both inertia and viscosity induce a delay, the so-called relaxation time, in the response towards statistical equilibrium of the mass-asymmetry degree of freedom on the fission path. We show that the conditions in the mass-asymmetry degree of freedom near the second barrier are preserved for all systems at excitation energies above a certain threshold. Anomalies that were hitherto unexplained appear in the fission yields and total kinetic energies at lower energies for trajectories, which can reach scission only by quantum-mechanical tunneling through the potential beyond the second barrier. This indicates that the relaxation time in the mass-asymmetry degree of freedom for classically allowed trajectories is longer than the dynamical saddle-to-scission time. This finding is the central result of our work that provides novel information on the transport properties of nuclear matter. Possible scenarios that explain this finding are discussed. These are either a long oscillation time due to a large influence of inertia or a strong friction resulting from a large viscosity. The first option is in severe conflict with the widely used assumption that the role of collective inertia in fission dynamics is negligible, while both options contradict the widespread assumption of local statistical equilibrium in all collective degrees of freedom along the fission path.

    Comments:
    14 pages, 5 figures; Fig. 1 modified; added references; revised interpretation of the data
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.24590 [pdf]
    0 citations
  12. 12

    [Submitted on 29 Sept 2025]

    Uncertainties with low-resolution nuclear forces

    Tom Plies🇩🇪 · Matthias Heinz🇩🇪 · Achim Schwenk🇩🇪

    Low-resolution nuclear Hamiltonians, obtained from chiral effective field theory (EFT) and softened using renormalization group techniques, have been very successful in nuclear structure theory. The associated EFT truncation uncertainty for these potentials is difficult to quantify. We use singular value decompositions of low-resolution nuclear forces to obtain an operator basis to study Hamiltonian uncertainties for these potentials. We perform Bayesian inference for the singular values and three-body low-energy constants, the free parameters of nuclear Hamiltonians in our framework, using likelihoods based on nucleon-nucleon phase shifts and triton observables to account for the EFT truncation uncertainties in these quantities. Validating our inference, we find good reproduction of input uncertainties for low-energy phase shifts and three-nucleon observables. On the other hand, uncertainties for higher-energy phase shifts are systematically underestimated, which we attribute to limitations of the singular value decomposition and neglected correlations between phase shifts at different energies. We propagate the resulting distribution of Hamiltonians forward to predictions for ground-state properties of O and Ca, comparing against other state-of-the-art nuclear structure predictions. Our approach makes it possible to account for EFT uncertainties when using low-resolution potentials, which is important for many ongoing studies in exotic nuclei.

    Comments:
    20 pages, 13 figures, published version
    Subjects:
    Nuclear Theory (nucl-th); Nuclear Experiment (nucl-ex)
    arXiv:
    2509.24671 [pdf]
    PRC(2026)·6 citations
  13. 13

    [Submitted on 29 Sept 2025]

    Tracing pT-differential radial flow from blast-wave analytics to quark coalescence

    Jie Wan🇨🇳 · Chun-Zheng Wang🇨🇳 · Yu-Gang Ma🇨🇳 · Qi-Ye Shou🇨🇳

    The observable , which quantifies event-by-event fluctuations in the differential transverse-momentum spectrum, is proposed as a direct and penetrating probe of radial flow in heavy-ion collisions. Recent measurements at the LHC exhibit a clear mass ordering for pions, kaons and protons at low \pt and a baryon-meson splitting at intermediate \pt, resembling to the well-known features of elliptic flow (). In this letter, we first derive an analytic expression of within a Blast-Wave framework incorporating fluctuations of freeze-out temperature and radial expansion velocity, which can naturally explains the experimentally observed mass ordering. The distinct dynamical origins of the mass ordering in and are discussed. Furthermore, using the AMPT model, we demonstrate that the baryon-meson splitting emerges spontaneously from the quark coalescence. This study provides deeper insight into the observable and the collective dynamics of the QGP.

    Comments:
    6 pages, 6 figures
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2509.24889 [pdf]
    PRC(2026)·6 citations
  14. 14

    [Submitted on 29 Sept 2025]

    Precision calculation of HeBe for solar physics

    Ratna Khadka🇺🇸 · Ling Gan🇺🇸 · Renato Higa🇺🇸 · Gautam Rupak🇺🇸

    We calculate the cross section for radiative capture HeBe at next-to-next-to-leading order (NNLO). At this order of perturbation, momentum dependent two-body currents make their first appearance. We provide a model-independent construction of these currents from gauge and Galilean invariance, where the general framework for constructing higher-order two-body currents in low-energy effective field theories becomes evident. The HeBe astrophysical S-factor keV b is obtained from a Bayesian analysis at NNLO, with an additional nominal theoretical uncertainty keV b of 3%.

    Comments:
    Main text 8 pages with 3 figures and 3 tables, supplementary material 4 pages with 1 figure and 1 table
    Subjects:
    Nuclear Theory (nucl-th); Solar and Stellar Astrophysics (astro-ph.SR); Nuclear Experiment (nucl-ex)
    arXiv:
    2509.24931 [pdf]
    PLB(2026)·1 citation
  15. 15

    [Submitted on 26 Sept 2025] (cross-list from hep-ph)

    Toward the Analytic Bootstrap of Energy Correlators

    Jianyu Gong🇨🇳 · Andrzej Pokraka🇳🇱 · Kai Yan🇨🇳 · Xiaoyuan Zhang🇺🇸

    In this paper, we present a framework for the analytic bootstrap of three-point energy correlators, a crucial observable in super Yang-Mills theory and quantum chromodynamics (QCD). Our approach combines spherical contour techniques, general physical constraints such as pole cancellations, and power correction data in the singular limits to determine its analytic expression. In contrast to previous bootstrap studies restricted to scattering amplitudes for supersymmetric theories, our framework makes use of the properties of Feynman integrals, marking a significant step toward bootstrapping realistic QCD observables. Using this method, we derive analytic expressions for leading-order three-point energy correlators with equal and unequal energy weights, where the latter are crucial ingredients for projected -point energy correlators. We also apply the recently developed technique of analytic regression with lattice reduction as a way to bypass needing explicit expressions for the singular limits. Bridging theoretical advances in scattering amplitudes with the renewed interest in weighted cross-sections, our work opens the door to precision tests of QCD dynamics through analytic event-shape predictions.

    Comments:
    38 pages + appendices, 11 figures
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Theory (hep-th); Nuclear Theory (nucl-th)
    arXiv:
    2509.22782 [pdf]
    JHEP(2026)·4 citations
  16. 16

    [Submitted on 26 Sept 2025] (cross-list from hep-ph)

    Theory of Quarkonia as Probes for Deconfinement

    Xiaojun Yao🇺🇸

    This is a plenary talk given at Quark Matter 2025, summarizing recent theoretical developments for the understanding of quarkonium production in relativistic heavy ion collisions and how quarkonium uniquely probes the deconfined phase of QCD matter.

    Comments:
    6 pages, contribution to the proceedings of the XXXI International Conference on Ultra-relativistic Nucleus-Nucleus Collisions (Quark Matter 2025) in Frankfurt; v2: corrected some typos
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2509.22932 [pdf]
    EPJ Web Conf.(2026)·0 citations
  17. 17

    [Submitted on 28 Sept 2025] (cross-list from gr-qc)

    Thermoelectric Conduction in General Relativity: A Causal, Stable, and Well Posed Theory

    Lorenzo Gavassino🇬🇧

    We present a covariantly stable first-order framework for describing charge and heat transport in isotropic rigid media embedded in curved spacetime. Working in the Lorenz gauge, we show that the associated initial value problem is both causal and locally well-posed in the fully nonlinear regime. We then apply such framework to explore a range of gravitothermoelectric effects in metals undergoing relativistic acceleration. These include (1) the separation of charge through acceleration, (2) the non-uniformity of Joule heating across accelerating circuits due to time dilation, and (3) the effect of redshift on magnetic diffusion. As an astrophysical application, we derive a relativistic Thomas-Fermi equation governing the charge distribution inside a compact object, also accounting for Seebeck charge displacements driven by cooling.

    Comments:
    6 pages and 5 figures (main text) + 6 pages and 1 figure (supplementary material), published in PRL (see https://journals.aps.org/prl/abstract/10.1103/b2k6-thdy)
    Subjects:
    General Relativity and Quantum Cosmology (gr-qc); High Energy Physics — Theory (hep-th); Nuclear Theory (nucl-th)
    arXiv:
    2509.23845 [pdf]
    PRL(2026)·2 citations
  18. 18

    [Submitted on 28 Sept 2025] (cross-list from hep-ph)

    Decoupling hydrodynamization from thermalization via nonlinear Boltzmann equation

    Xingjian Lu🇨🇳 · Shuzhe Shi🇨🇳

    The early thermalization puzzle arises from the unexpectedly early applicability of hydrodynamics in heavy-ion collisions. While hydrodynamics has traditionally been associated with the onset of local thermal equilibrium, its derivations -- whether microscopic or macroscopic -- rely instead on linearization around equilibrium. However, the linearization timescale -- the time at which a system's evolution begins to follow a linearized equation -- has not been systematically investigated. In this work, we employ the spectral nonlinear Boltzmann equation -- the lowest-order truncation of the spectral Bogoliubov--Born--Green--Kirkwood--Yvon (BBGKY) hierarchy -- to analyze the timescales of linearization and thermalization under three distinct truncation schemes. The first two truncations allow for analytic treatment via recursive spectral equations, while the third requires numerical methods for generic initial conditions. The analysis is performed for a homogeneous, massless system with a constant differential cross section. For this simplified setup, we find a robust separation: the linearization time is consistently about half the thermalization time (). This separation of timescales suggests an explanation for the early applicability of hydrodynamics and points toward a possible quantitative resolution of the early thermalization puzzle.

    Comments:
    28 pages, 5 figures
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Statistical Mechanics (cond-mat.stat-mech); Mathematical Physics (math-ph); math.MP (math.MP); Nuclear Theory (nucl-th)
    arXiv:
    2509.23978 [pdf]
    3 citations
  19. 19

    [Submitted on 28 Sept 2025] (cross-list from hep-ph)

    Resonance Contributions to Radiative Corrections in Charged-Current Elastic (Anti)Neutrino-Nucleon Scattering at GeV Energies

    Oleksandr Tomalak🇺🇸

    We present the first evaluation of virtual resonance contributions to the charged-current (anti)neutrino-nucleon elastic scattering at GeV energies, focusing on the dominant resonance. We approximate the vector part of the transition by the leading magnetic dipole term. Our results for the cross-section corrections at fixed neutrino energy indicate the permille-level contribution of resonance intermediate states to the elastic and radiative scattering cross sections. This calculation exhibits the expected infrared behavior of the invariant amplitudes and unpolarized cross sections. Our findings provide important insights into inelastic excitations in the charged-current (anti)neutrino-nucleon elastic scattering at GeV energies.

    Comments:
    20 pages, 5 figures, version published in Physics Letters B
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
    arXiv:
    2509.24011 [pdf]
    PLB(2026)·2 citations
  20. 20

    [Submitted on 29 Sept 2025] (cross-list from hep-ph)

    Heavy flavor correlations and Quarkonia production in high energy pp collisions in the EPOS4 framework

    Jiaxing Zhao🇩🇪 · Taesoo Song🇩🇪 · Pol Bernard Gossiaux🇫🇷 · Klaus Werner🇫🇷 · Joerg Aichelin🇫🇷 · Elena Bratkovskaya🇩🇪

    In QCD, the production of heavy quark-antiquark pairs can proceed through different mechanisms, each imprinting characteristic correlations between the heavy quarks. In this work, we use the EPOS4 event generator to study how these correlations affect quarkonium production in pp collisions. Our results demonstrate that the observed correlations between heavy mesons directly reflect the underlying production mechanisms and simultaneously shape the transverse-momentum distributions of quarkonia.

    Comments:
    Contribution to: Quark Matter 2025
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2509.24476 [pdf]
    EPJ Web Conf.(2026)·1 citation
  21. 21

    [Submitted on 29 Sept 2025] (cross-list from hep-ph)

    Heavy flavor angular correlations as probes of the glasma

    Dana Avramescu🇫🇮 · Vincenzo Greco🇮🇹 · Tuomas Lappi🇫🇮 · Heikki Mäntysaari🇫🇮 · David I. Müller🇦🇹

    We study the effect of the glasma fields, formed in the early stage of heavy-ion collisions, on the transport of pairs produced back-to-back. We find that for pairs with moderate initial transverse momentum evolving in glasma fields with sufficiently large saturation momentum , the azimuthal correlation is quickly affected. The decorrelation widths during the glasma and Quark Gluon Plasma (QGP) phases are comparable.

    Comments:
    4 pages, 4 figures, proceedings for Quark Matter 2025
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Lattice (hep-lat); Nuclear Theory (nucl-th)
    arXiv:
    2509.24628 [pdf]
    EPJ Web Conf.(2026)·0 citations
  22. 22

    [Submitted on 29 Sept 2025] (cross-list from hep-lat)

    Finite-volume formalism for at maximal isospin

    Maxwell T. Hansen🇬🇧 · Fernando Romero-López🇨🇭 · Stephen R. Sharpe🇺🇸

    We extend the relativistic field theoretic finite-volume formalism to scattering states at maximal isospin, . As in previous work using the relativistic field theory approach, we work to all orders in a generic low-energy effective theory, and determine the quantization condition that relates finite-volume energies to intermediate K matrices, and the integral equations connecting the latter to the physical scattering amplitudes. We discuss the parametrization of the K matrices, and explain in detail the new features that arise in implementing the quantization condition due to the spin of the nucleon in combination with the use of non-degenerate particles. As a concrete example, we provide a sample numerical application including the resonance in the subchannel. The extension to the and channels is more involved, due to mixing with states, and we do not provide a complete formalism for these cases. We explain why states cannot be included by treating the nucleon as a pole in -wave scattering, an approach that has been successful in studying scattering using the three-particle formalism. We additionally provide results for all isospins under the assumption of no two-to-three mixing, thereby laying the groundwork for a follow-up paper in which all systems are fully treated. Finally, we study the singularities in amplitudes arising from intermediate states, and find that our subthreshold cutoff functions must be modified to avoid such singularities.

    Comments:
    55 pages, 8 figures, 3 tables. v2: fixed mistake in affiliations and updated acknowledgments
    Subjects:
    High Energy Physics — Lattice (hep-lat); High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2509.24778 [pdf]
    JHEP(2026)·11 citations
  23. 23

    [Submitted on 29 Sept 2025] (cross-list from quant-ph)

    Quantum Dynamics with Time-Dependent Neural Quantum States

    Alejandro Romero-Ros · Javier Rozalén Sarmiento · Arnau Rios

    We present proof-of-principle time-dependent neural quantum state (NQS) simulations to illustrate the ability of this approach to effectively capture key aspects of quantum dynamics in the continuum. NQS leverage the parameterization of the wave function with neural-network architectures. Here, we put NQS to the test by solving the quantum harmonic oscillator. We obtain the ground state and perform coherent state and breathing mode dynamics. Our results are benchmarked against analytical solutions, showcasing an excellent agreement.

    Comments:
    5 pages, 2 figures, proceedings EuCAIFCon2025
    Subjects:
    Quantum Physics (quant-ph); cs.NE (cs.NE); Nuclear Theory (nucl-th)
    arXiv:
    2509.24865 [pdf]
    1 citation
  24. 24

    [Submitted on 29 Sept 2025] (cross-list from hep-ph)

    New insights from the flavor dependence of quark transverse momentum distributions in the pion

    Lorenzo Rossi🇮🇹 · Alessandro Bacchetta🇮🇹 · Matteo Cerutti🇫🇷 · Marco Radici🇮🇹

    We update our previous extraction of transverse momentum distributions of unpolarized quarks in the pion by implementing a more comprehensive description of theoretical uncertainties and, for the first time, by exploring possible differences among quark flavors. We extract such distributions from all available data for unpolarized pion-nucleus Drell-Yan processes, where the cross section is differential in the transverse momentum of the final lepton pair. The cross section involves transverse momentum distributions in the nucleon, that we consistently take from our previous studies.

    Comments:
    The MAP (Multi-dimensional Analysis of Partonic distributions) Collaboration; 10 pages, 7 (multiple) figures
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Experiment (hep-ex); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
    arXiv:
    2509.25098 [pdf]
    PLB(2026)·7 citations

Affiliations

first authorsco-authorsvia INSPIRE