PaperPanorama

Nuclear Theory·nucl-th

Wednesday·November 12, 2025

11 papers3 primary·8 cross-listed

  1. 01

    What happens in hydrodynamic simulations of heavy-ion collisions when causality is violated?

    Lorenzo Gavassino🇺🇸 · Henry Hirvonen🇺🇸 · Jean-Francois Paquet🇺🇸 · Mayank Singh🇺🇸 · Gabriel Soares Rocha🇺🇸

    We summarize our recent investigations on how causality violations in Israel-Stewart-type relativistic viscous hydrodynamic simulations can give rise to both analytical and numerical instabilities. The classification of spacetime regions into causal and stable ("good"), acausal but stable ("bad"), and acausal and unstable ("ugly") is reviewed. We compare the predictions of the MUSIC hydrodynamic solver with an analytical solution, and demonstrate how the acausality-driven instabilities develop in a simple one-dimensional scenario.

    nucl-thhep-thEPJ Web Conf.(2026)·0 citations
  2. 02

    -decay half-lives and -cluster preformation factors of nuclei around line

    Jing Li · Shan He · Yueqing Li · Weiwei Wang · Yanzhao Wang · Jianzhong Gu

    In this work, a microscopic effective nucleon-nucleon interaction based on the Dirac-Brueckner-Hartree-Fock matrix starting from a bare nucleon-nucleon interaction is used to explore the -decay half-lives of the nuclei near line. Specifically, the -nucleus potential is constructed by doubly folding the effective nucleon-nucleon interaction with respect to the density distributions of both the -cluster and daughter nucleus. Moreover, the -cluster preformation factor is extracted by a cluster formation model. It is shown that the calculated half-lives can reproduce the experimental data well. Then, the -decay half-lives that are experimentally unavailable for the nuclei around are predicted, which are helpful for searching for the new candidates of -decay in future experiments. In addition, by analyzing the proton-neutron correlation energy and two protons-two neutrons correlation energy of and isotopes, the -cluster preformation factor evolution with is explained. Furthermore, it is found that the two protons-two neutrons interaction plays more important role in -cluster preformation than the proton-neutron interaction. Meanwhile, proton-neutron interaction results in the odd-even effect of the -cluster preformation factor.

    nucl-th0 citations
  3. 03

    Finite-range pairing in nuclear density functional theory

    Sudhanva Lalit · Paul-Gerhard Reinhard · Kyle Godbey · Witold Nazarewicz

    Pairing correlations are ubiquitous in low-energy states of atomic nuclei. To incorporate them within nuclear density functional theory, often used for global computations of nuclear properties, pairing functionals that generate nucleonic pair densities and pairing fields are introduced. Many pairing functionals currently used can be traced back to zero-range nucleon-nucleon interactions. Unfortunately, such functionals are plagued by deficiencies that become apparent in large model spaces that contain unbound single-particle (continuum) states. In particular, the underlying computational schemes diverge as the single-particle space increases, and the results depend on how marginally occupied states are incorporated. These problems become more pronounced for pairing functionals that contain gradient-density dependence, such as in the Fayans functional. To remedy this, finite-range pairing functionals are introduced. In this study, this is done by folding the pair density with Gaussians. We show that a folding radius of about 1\,fm offers the best compromise between quality and stability, and substantially reduces the pathological behavior in different numerical applications.

    nucl-thPRC(2026)·3 citations
  4. 04

    Radiative corrections to

    Gilberto Colangelo🇨🇭 · Martina Cottini🇨🇭 · Martin Hoferichter🇨🇭 · Simon Holz🇨🇭

    Hadronic decays present an opportunity to determine the isovector part of the hadronic-vacuum-polarization contribution to the anomalous magnetic moment of the muon in a way complementary to cross sections. However, the required isospin rotation is only exact in the isospin limit, and corrections need to be under control to draw robust conclusions, most notably for decays to determine the two-pion contribution, . In this work, we present a novel analysis of the required radiative corrections using dispersion relations, thereby extending in a model-independent way the previous analysis in chiral perturbation theory (ChPT) beyond the threshold region. In particular, we include the dominant structure-dependent virtual corrections from pion-pole diagrams, leading to sizable changes in the vicinity of the resonance. Moreover, we work out the matching to ChPT and devise a strategy for a stable numerical evaluation of real-emission contributions near the two-pion threshold, which proves important to capture isospin-breaking corrections enhanced by the threshold singularity. For the numerical analysis, we use a dispersive representation of the pion form factor including the , resonances, perform fits to the available data sets for the spectral function, and calculate the corresponding radiative correction factor in a self-consistent manner. Based on these results, we evaluate the -specific isospin-breaking corrections to .

    hep-phhep-exhep-latnucl-thJHEP(2026)·17 citations
  5. 05

    Rotating the Color Glass Condensate

    Renaud Boussarie🇫🇷 · Paul Caucal🇫🇷 · Piotr Korcyl🇵🇱 · Yacine Mehtar-Tani🇺🇸

    High-energy QCD evolution beyond leading order suffers from instabilities driven by large collinear logarithms. We present a framework, consistent with the standard high-energy operator product expansion (OPE), that restores perturbative stability order by order. The method involves a change of basis in the space of high-energy operators, which modifies both the evolution kernel and the coefficient functions while leaving physical observables invariant. Within this factorization scheme, we derive a next-to-leading-order renormalization-group equation whose numerical solution exhibits stable evolution up to large rapidities, paving the way for a systematic framework for precision studies of gluon saturation at current and future colliders.

    hep-phhep-thnucl-th4 citations
  6. 06

    Jet quenching in out-of-equilibrium QCD matter

    João Barata🇨🇭 · Kirill Boguslavski🇫🇷 · Florian Lindenbauer🇦🇹 · Andrey V. Sadofyev🇵🇹

    We present the first study of jet substructure modifications during the bottom-up evolution that describes the early stages of heavy-ion collisions. To this end, we study the bremsstrahlung radiation rate of soft gluons from a hard parton propagating through out-of-equilibrium QCD matter. The gluon spectrum is computed within the Improved Opacity Expansion, which accounts for both multiple soft and single hard momentum exchanges between the hard probe and the medium. The background evolution is obtained from effective kinetic theory simulations that determine the jet quenching parameter, which in turn controls the radiation rate. We compute the radiation rate for initially under- and over-occupied systems, as well as for an expanding system undergoing hydrodynamization, which typically represents the initial stages of heavy-ion collisions. The results for these dynamical backgrounds are compared to static and thermally matched scenarios, allowing to gauge the importance of bulk expansion in the evolution of the jet cascade. Our findings show that the early stages of the bulk matter evolution in heavy-ion collisions leave a sizable imprint on the radiation pattern inside jets. These results establish a basis for incorporating pre-equilibrium dynamics into realistic descriptions of jet quenching and hard-probe evolution.

    hep-phhep-exnucl-thPRD(2026)·9 citations
  7. 07

    On the role of induced electric field in the time-dependent Aharonov-Bohm effect

    Masashi Wakamatsu🇯🇵

    Whether the time-dependent Aharonov-Bohm (AB) effect even exists or not has been the subject of long-standing debate. There are two factors complicating the problem. First, in the closed spacetime line integral of the vector potential that is thought to give the AB-phase shift, how to treat the time-varying vector potential is highly nontrivial. Second, the time-varying magnetic flux generates induced electric field even outside the solenoid. In the present paper, motivated by a recent work by Gao, we re-investigate the role of the induced electric field with the utmost care. This analysis reveals a highly nontrivial effect of the induced electric field, which turns out to be useful for verifying the very existence of the time-dependent AB-effect.

    quant-phhep-phnucl-th0 citations
  8. 08

    and Production in Proton-Proton Scattering through Hadronic Molecules

    Di Ben🇨🇳 · Bing-Song Zou🇨🇳

    This study estimates the contributions of hidden-strangeness hadronic molecular states (, ) to production and hidden-charm states to production in collisions. The calculated cross-sections reach for and for at energies ~GeV above threshold. We also compute the spin density matrix element and the decay angular distributions for and . To support future experiments, we conduct Monte Carlo simulations for the four-body final states of and . The resulting lab-frame distributions are expected to inform detector design at facilities like the High-Intensity heavy-ion Accelerator Facility (HIAF) and the proposed Chinese Advanced Nuclear Physics Research Facility (CNUF), enabling more precise measurements and tighter theoretical constraints. Furthermore, to explain the STAR collaboration's result on meson spin alignment in heavy-ion collisions, we propose a novel mechanism involving hidden-strangeness molecular states, testable with future high-statistics data.

    hep-phnucl-th0 citations
  9. 09

    Anomaly induced transport from symmetry breaking in holography

    Ashis Tamang🇮🇳 · Nishal Rai🇮🇳 · Karl Landsteiner🇪🇸 · Eugenio Megias🇪🇸

    We study the transport properties of relativistic fluids induced by quantum anomalies in presence of explicit symmetry breaking. To this end we consider a holographic Einstein-Maxwell model in 5 dimensions with pure gauge and a mixed gauge-gravitational Chern-Simons terms, coupled with a scalar field. To study the chiral vortical effects and the energy transport sector, apart from the chiral magnetic effects, we have considered the full backreaction of the gauge field on the metric. We have studied the anomalous effects by using Kubo formulae involving correlators of the charged currents and the energy current. Our findings reveal that, in the presence of explicit symmetry breaking, anomaly-induced transport phenomena can extend beyond anomalous currents and affect non-anomalous sectors as well. In particular, we find that all the conductivities display a distinct sensitivity to the mass parameter controlling the symmetry breaking, thus reflecting the interplay between anomaly coefficients and explicit symmetry breaking terms. These findings highlight the role played by pure gauge and mixed gauge-gravitational anomalies in holographic transport, and their importance for strongly coupled systems with broken symmetries.

    hep-thcond-mat.str-elhep-phnucl-thJHEP(2026)·1 citation
  10. 10

    Revisiting the Possibility of a Sharp Phase Transition in Cold Neutron Stars

    Bao-Jun Cai🇨🇳 · Bao-An Li🇺🇸 · Yu-Gang Ma🇨🇳

    First-order phase transitions (FOPTs) in cold neutron stars (NSs) have been extensively studied and have provided valuable insights into the behavior of the densest matter visible in our Universe, although a strong consensus has yet to emerge. Revisiting the possibility of a hadron-quark FOPT from a new perspective, we examine the interplay between the coupled nature of gravity and microscopic interactions in Tolman--Oppenheimer--Volkoff (TOV) equations and the fundamental requirements of thermodynamic consistency in NSs. We demonstrate that a sharp FOPT manifested as a plateau in the equation of state (EOS) , i.e., pressure versus energy density , is intrinsically incompatible with the regularity conditions of the TOV solutions. Although numerical integrations of the TOV equations with EOSs incorporating FOPTs may yield seemingly reasonable mass-radius relations consistent with current observations, such results can mask underlying inconsistencies. Our analysis thus establishes a structural consistency criterion for constraining dense-matter EOSs using NS observables, complementing existing studies of possible phase transitions in NS interiors.

    astro-ph.HEhep-phhep-thnucl-ex+10 citations
  11. 11

    Stable evolution of relativistic hydrodynamics order-by-order in gradients

    Michal P. Heller🇧🇪 · Alexandre Serantes🇧🇪 · Michał Spaliński🇵🇱 · Benjamin Withers🇬🇧

    We provide a systematic framework for solving the initial value problem for relativistic hydrodynamics formulated as a gradient expansion. Secular growth is handled by a suitable covariant resummation scheme, which reorganises the degrees of freedom at each order in the expansion while preserving the sum. Our scheme can be applied to any order in the gradient expansion; we provide the explicit formulation at first and second orders. When working to first order, we find that the BDNK equations of motion emerge as an intermediate step in a calculation performed in the Landau frame. We show that non-hydrodynamic modes appear only in such intermediate calculations and cancel when evaluating solutions to the required order. Our procedure does not introduce any other fields or require any additional initial data beyond those appearing in the theory of ideal fluids.

    hep-thgr-qcnucl-th3 citations

Affiliations

first authorsco-authorsvia INSPIRE