PaperPanorama

Nuclear Theory·nucl-th

Tuesday·September 17, 2024

18 papers9 primary·9 cross-listed

  1. 10

    Predictions for photon-jet correlations at forward rapidities in heavy-ion collisions

    Souvik Priyam Adhya🇵🇱 · Krzysztof Kutak🇵🇱 · Wieslaw Placzek🇵🇱 · Martin Rohrmoser🇵🇱 · Konrad Tywoniuk🇳🇴

    In this work, we study for the first time jet-medium interactions in heavy-ion collisions with introduction of saturation and Sudakov effects with parameters tuned for upcoming forward calorimeter acceptances in experiments, in particular the ALICE FoCal detector. We focus on jet correlations by taking into account in-medium parton evolution using the BDIM equation that describes jet interactions with the quark-gluon plasma (QGP) combined with vacuum-like emissions (VLE). We systematically introduce the early time gluon saturation dynamics through the small- Improved Transverse Momentum Dependent factorization (ITMD). For our purpose, we use Monte Carlo programs KATIE and TMDICE to generate hard events and in-medium parton evolution, respectively. We present results of azimuthal correlations and nuclear modification ratios to gauge the impact of the gluon saturation effects at early time for the in-medium jet energy loss.

    hep-phhep-exnucl-thEPJC(2025)·3 citations
  2. 11

    Optical model potentials for deuteron scattering off Mg, Si, Ni, Zr, Sn, and Pb at 100 MeV/nucleon

    D. Patel · D.C. Cuong · K.B. Howard · U. Garg · Dao T. Khoa · H. Akimune · G.P.A. Berg · M. Fujiwara · M.N. Harakeh · M. Itoh · C. Iwamoto · T. Kawabata and 4 other authors

    Angular distributions of the elastic and inelastic deuteron-nucleus scattering off Mg, Si, Ni, Zr, Sn, and Pb have been measured at a beam energy of 98 MeV/nucleon, with the goal of constraining the deuteron optical potential in this kinematical regime, and to extract the reduced transition probabilities for the ground-state transitions to low-lying excited states of these nuclei. Two potential models were used in the analysis of the measured and data within the optical model and the distorted-wave Born approximation: the phenomenological optical model potential associated with the collective model of nuclear scattering, and the semi-microscopic double-folding model of the deuteron-nucleus potential based on a realistic density-dependent M3Y interaction. The deuteron optical potential and inelastic scattering form factors were calculated using these two potential models, allowing for a direct comparison between the potential models as well as the validation of the deduced transition rates.

    nucl-exnucl-thPRC(2024)·0 citations
  3. 12

    Resonance suppression during the hadronic stage from the FAIR to the intermediate RHIC energy regime

    Amine Chabane🇩🇪 · Lisa Engel🇩🇪 · Tom Reichert🇩🇪 · Jan Steinheimer🇩🇪 · Marcus Bleicher🇩🇪

    The energy and centrality dependence of the kaon resonance ratio is explored in the RHIC-BES and CBM-FAIR energy regime. To this aim, the Ultra-relativistic Quantum Molecular Dynamics (UrQMD) model is employed to simulate reconstructable resonances in Au+Au and p+p collisions from GeV. We obtain a good description of the resonance yields and mean transverse momenta over the whole investigated energy range. The decrease of the ratio, with increasing centrality is in line with the available experimental data. We also observe the experimenatlly measured increase in with increasing centrality which is interpreted as a lower reconstruction probability of low- due to the dependent absorption of the decay daughter hadrons. We conclude that the observed suppression of reconstructable resonances provides a strong sign of an extended hadronic rescattering stage at all investigated energies. Its duration increases from peripheral to central reactions as expected. Following a method, suggested by the STAR experiment, the "duration" of the hadronic stage is extracted using the ratios at chemical and kinetic freeze-out. The resulting lifetimes are in good agreement with the experimental data, but much shorter than the actual lifetime of the hadronic phase in the transport simulation. This indicates that the experimental method to estimate the life time of the hadronic stage is too simplified.

    hep-phnucl-exnucl-thPRC(2025)·6 citations
  4. 13

    Domain-wall Skyrmion phase of QCD in magnetic field: Gauge field dynamics

    Yuki Amari🇯🇵 · Minoru Eto🇯🇵 · Muneto Nitta🇯🇵

    The ground state of QCD in sufficiently strong magnetic field at finite baryon density is an inhomogeneous state consisting of an array of solitons, called the chiral soliton lattice (CSL). It is, however, replaced in a region with higher density and/or magnetic field by the so-called domain-wall Skyrmion(DWSk) phase where Skyrmions are created on top of the CSL. This was previously proposed within the Bogomol'nyi-Prasad-Sommerfield (BPS) approximation neglecting a gauge field dynamics and taking into account its effect by a flux quantization condition. In this paper, by taking into account dynamics of the gauge field, we show that the phase boundary between the CSL and DWSk phases beyond the BPS approximation is identical to the one obtained in the BPS approximation. We also find that domain-wall Skyrmions are electrically charged with the charge one as a result of the chiral anomaly.

    hep-phcond-mat.mes-hallnucl-thJHEP(2025)·13 citations
  5. 14

    New insights into the analytic structure of correlation functions via kinetic theory

    Robbe Brants🇧🇪

    The way a relativistic system approaches fluid dynamical behaviour can be understood physically through the signals that will contribute to its linear response to perturbations. What these signals are is captured in the analytic structure of the retarded correlation function. The non-analyticities can be grouped into three types based on their dimension in the complex frequency plane. In this paper, we will use kinetic theory to find how we can calculate their corresponding signals. In the most general case of a system with particles that have a continuum of thermalization rates, we find that a non-analytic region appears. To calculate its signal, we introduce the non-analytic area density that describes the properties of this region, and we construct a method to calculate it. Further, to take into account the ambiguity present in signal analysis, following from manipulations of the non-analyticities, we will identify two specific choices called pictures with interesting analytic properties and compare in what scenarios each picture is most useful.

    hep-thhep-phnucl-thPRD(2024)·18 citations
  6. 15

    NLL + predictions of lepton-jet azimuthal angular distribution in deep-inelastic scattering

    Shen Fang🇨🇳 · Mei-Sen Gao🇨🇳 · Hai Tao Li🇨🇳 · Ding Yu Shao🇨🇳

    We present an analysis of lepton-jet azimuthal decorrelation in deep-inelastic scattering (DIS) at next-to-next-to-next-to-leading logarithmic (NLL) accuracy, combined with fixed-order corrections at . In this study, jets are defined in the lab frame using the anti- clustering algorithm and the winner-take-all recombination scheme. The NLL resummation results are derived from the transverse-momentum dependent factorization formula within the soft-collinear effective theory, while the fixed-order matching distribution is calculated using the {\tt NLOJET++} event generator. The azimuthal decorrelation between the jet and electron serves as a critical probe of the three-dimensional structure of the nucleon. Our numerical predictions provide a robust framework for precision studies of QCD and the nucleon's internal structure through jet observables in DIS. These results are particularly significant for analyses involving jets in HERA data and the forthcoming electron-ion collider experiments.

    hep-phhep-exnucl-exnucl-thJHEP(2025)·11 citations
  7. 16

    Neutral pion to two-photons transition form factor revisited

    M. Atif Sultan🇨🇳 · Jiayin Kang🇨🇳 · Adnan Bashir🇲🇽 · Lei Chang🇨🇳

    Based upon a combined formalism of Schwinger-Dyson and Bethe-Salpeter equations in quantum chromodynamics (QCD), we propose a QCD kindred algebraic model for the dressed quark propagator, for the Bethe-Salpeter amplitude of the pion and the electromagnetic quark-photon interaction vertex. We then compute the transition form factor for a wide range of photon momentum transfer squared . The quark propagator is expanded out in its perturbative functional form but with dynamically generated dressed quark mass. It has complex conjugate pole singularities in the complex-momentum plane which is motivated by the solution of the quark gap equation with rainbow-ladder truncation of the infinite set of Schwinger-Dyson equations. This complex pole singularity structure of the quark propagator can be associated with a signal of confinement which prevents quarks to become stable asymptotic states. The Bethe-Salpeter amplitude is expressed without a spectral density function, which encapsulate its low and large momentum behaviour. The QCD evolution of the distribution amplitude is also incorporated into our model through the direct implementation of Efremov-Radyushkin-Brodsky-Lepage evolution equations. We include the effects of the quark anomalous magnetic moment in the description of the quark-photon vertex whose infrared enhancement is known to dictate hadronic properties. Once the QCD kindred model is constructed, we calculate the form factor and find it consistent with direct QCD-based studies as well as most available experimental data. It slightly exceeds the conformal limit for large which might be attributed to the scaling violations in QCD. The associated interaction radius and neutral pion decay width turn out to be compatible with experimental data.

    hep-phnucl-thPRD(2024)·6 citations
  8. 17

    The Current State of the Controversy over Screening in Nuclear Reactions

    Werner Däppen

    A controversy about the possibility of dynamic effects in nuclear screening has been around for several decades. On the one hand, there is the claim that there are no dynamic effects, and that the classic Salpeter correction based on static Debye screening is all that is needed for astrophysical applications. The size of the correction is on the order of 5% in typical solar fusion reactions. On the other hand, numerical simulations have shown that there is a dynamical effect, which essentially cancels the Salpeter correction. The results of the numerical simulations were later independently confirmed. The astrophysical community, however, has so far largely ignored the possibility of dynamical screening. The present paper is meant to serve as a reminder of the controversy. Not only does the claim of an absence of a dynamical effect equally warrant an independent confirmation, but there is motivation for further investigation, such as the assessment of current laboratory experiments and a quantitative study of the dynamical effect in case it will turn out to be real.

    astro-ph.SRnucl-exnucl-thSolar Phys.(2024)·1 citation
  9. 18

    Beth-Uhlenbeck equation for the thermodynamics of fluctuations in a generalised 2+1D Gross-Neveu model

    Biplab Mahato🇵🇱 · David Blaschke🇩🇪 · Dietmar Ebert🇩🇪

    We study a generalized version of the Gross-Neveu model in 2+1 dimensions. The model is inspired from Graphene, which shows a linear dispersion relation near the Dirac points. The phase structure and the thermodynamic properties in the mean field approximation have been studied before. Here, we go beyond the mean field level by deriving a Beth-Uhlenbeck equation for Gaussian fluctuations formulated in phase shift solutions, which we explore numerically, for the first time including their momentum dependence. We discuss the excitonic mass, fluctuation pressure, and phase shifts. The inclusion of momentum dependence in the phase shift shows a significant difference from the Lorentz-boosted version of the phase shift previously used in the literature. We find resurrection of the pseudoscalar bound states at large momentum above Mott temperature and show that the presence of Landau modes significantly contributes to the fluctuation pressure.

    cond-mat.mes-hallhep-phnucl-thPRD(2025)·2 citations

Affiliations

first authorsco-authorsvia INSPIRE