PaperPanorama

Nuclear Theory·nucl-th

Tuesday·May 6, 2025

18 papers13 primary·5 cross-listed

  1. 01

    Higher order flow coefficients -- A Messenger of QCD medium formed in heavy-ion collisions at the Large Hadron Collider

    Suraj Prasad🇮🇳 · Aswathy Menon K R🇮🇳 · Raghunath Sahoo🇮🇳 · Neelkamal Mallick🇫🇮

    Anisotropic flow and fluctuations are sensitive observables of the initial state effects in heavy ion collisions and are characterized by the medium properties and final state interactions. Using event-shape observables, one can constrain the probability distributions of anisotropic flow coefficients, thus reducing the linear and nonlinear contributions in the measured higher-order harmonics. In this paper, we use transverse spherocity as an event shape observable to study the flow coefficients and elliptic flow fluctuations. Transverse spherocity is found to have a strong correlation with elliptic flow and its fluctuations. We exploit this feature of transverse spherocity to remove the contribution to elliptic flow from higher-order harmonics. The study is performed in Pb--Pb collisions at TeV using a multi-phase transport model. The multi-particle Q-cumulant method estimates the anisotropic flow coefficients, which reduces the non-flow contributions. We observe a stronger system response to the flow coefficients for the events with smaller values of elliptic flow.

    nucl-thhep-exhep-phnucl-exPLB(2025)·7 citations
  2. 02

    Effects of a background magnetic field on dilepton radiation

    Han Gao🇨🇦 · Xiang-Yu Wu🇨🇦 · Sangyong Jeon🇨🇦 · Charles Gale🇨🇦

    We explore the feasibility of using dilepton radiations as a QGP magnetometer. We calculate the dilepton production rate in the presence of a time-dependent magnetic field typically found in heavy-ion collisions. We compute the thermal dilepton spectra from Au+Au collisions at = 19.6 GeV BES energy -- using a realistic (3+1)-dimensional multistage hydrodynamic simulation. We find the thermal dilepton elliptic flow to be very sensitive to the strength of the magnetic field.

    nucl-thEPJ Web Conf.(2025)·4 citations
  3. 03

    Generalized relativistic second-order spin hydrodynamics from Zubarev's non-equilibrium statistical operator

    Duan She🇨🇳 · Yi-Wei Qiu🇨🇳 · Ze-Fang Jiang🇨🇳 · Defu Hou🇨🇳

    Inspired by the work in Ref.[1], which considers the additional second-order contributions arising from nonlocal corrections due to two-point correlation functions of tensors of different ranks at distinct spacetime points, we similarly employ the nonequilibrium statistical operator method to extend this framework to include spin degrees of freedom. In addition to obtaining analogous extra second-order terms in the shear stress tensor, bulk viscous pressure, and charge diffusion currents resulting from such contributions, we further derive additional second-order terms originating from the same mechanism in the charge diffusion currents, rotational stress tensor and the boost heat vector. Furthermore, we express all transport coefficients represented by two-point or three-point correlations in terms of retarded Green's functions.

    nucl-thPRD(2025)·5 citations
  4. 04

    Chiral -exchange potential using the method of unitary transformation

    Victor Springer🇩🇪 · Hermann Krebs🇩🇪 · Evgeny Epelbaum🇩🇪

    Nuclear potentials are known to exhibit a considerable degree of scheme dependence. For one- and two-pion exchange nucleon-nucleon (NN) potentials, unitary ambiguities start showing up at the level of the leading relativistic corrections to the dominant static contributions. However, for the three-pion exchange potential, scheme-dependent contributions are expected to appear already at the static level. Here, we analyze the leading and subleading chiral -exchange NN potentials using the method of unitary transformation. In line with the expectations, our results for selected classes of contributions differ from those obtained by Kaiser using S-matrix matching. We present analytical expressions for the -exchange potential, which are off-shell consistent with the interactions used by the Bochum group, and discuss the numerical importance of the observed differences.

    nucl-thPRC(2025)·4 citations
  5. 05

    Tilted-axis-cranking covariant density functional theory for the high-spin spectroscopy in Ga

    Y. P. Wang · Y. K. Wang · P. W. Zhao

    The tilted-axis-cranking covariant density functional theory is applied to investigate the three newly-observed positive-parity bands SI, SII, and SIII in Ga. The energy spectra and angular momenta are calculated and compared with the experimental data. For the yrast band SI, pairing correlations play a crucial role for the states with spin . The bands SII and SIII are suggested to be signature partner bands with positive and negative signatures, respectively. The transition probabilities for these bands are predicted, and await further experimental verification. By analyzing the angular momentum alignments microscopicly, it is revealed that the protons and neutrons play an important role in the description of the collective structure of Ga.

    nucl-thnucl-exCPC(2026)·1 citation
  6. 06

    Dynamics of light nuclei produced in the massive transfer reactions

    Zi-Han Wang · Zhao-Qing Feng

    Within the framework of the dinuclear system (DNS) model by implementing the cluster transfer into the dissipation process, we systematically investigated the energy spectra and the angular distribution of the preequilibrium clusters (n, p, d, t, He, , Li, Be) in the massive transfer reactions of C+Bi, N+Tb, N+Tm, N+Ta, N+Au, N+Bi, Ni+Pt near the Coulomb barrier energies. It is found that the neutron emission is the most probable in comparison with the charged particles and the yields are comparable with the hydrogen isotopes in magnitude. The preequilibrium clusters are mainly produced from the projectile-like and target-like fragments in the evolution of dinuclear system. The kinetic energy spectra manifest the Boltzmann distribution and the Coulomb potential influences the structure. The preequilibrium clusters follows the angular distribution of multinucleon transfer fragments.

    nucl-thNucl.Sci.Tech.(2025)·3 citations
  7. 07

    Probing the neutron-skin thickness via the double-charge exchange reactions in pion-nucleus collisions

    Ban Zhang🇨🇳 · Zhao-Qing Feng🇨🇳

    Within the framework of Lanzhou quantum molecular dynamics (LQMD) transport model, we investigate the influence of the neutron-skin thickness of neutron-rich nuclei on the pion emission in the double-charge exchange reactions near the -resonance energy, in particular, the rapidity and transverse momentum spectra, charged pion ratios et al. The reactions induced by pions are associated with the multiple processes of pions, nucleons and -resonances, correlated with the neutron-skin thickness. It is found that the kinetic energy spectra of / ratio are sensitive to the neutron-skin thickness of neutron-rich nuclei for extracting the subsaturation-density symmetry energy. The double-charge exchange reactions are influenced by the neutron-skin thickness, in-medium properties of resonances, pion-nucleon potential and pion-nucleon scattering.

    nucl-thPRC(2026)·1 citation
  8. 08

    Exploring the role of low-lying intrinsic degrees of freedom and their impact on fusion cross-sections

    Nishu Jain · M. Bhuyan · Raj Kumar

    The present work focuses on examining the low-lying intrinsic degrees of freedom and their impact on fusion dynamics. Fusion cross-sections were calculated using the coupled-channel code CCFULL for four specific reactions: O+Ge, O+Nd, O+W, and O+W, all conducted at energies below the Coulomb barrier across various energy levels. Vibrational and rotational features were studied concerning energy to distinguish their respective effects on fusion properties. The results indicate that the theoretical calculations for the nuclei Ge, Nd, W and W closely match the experimental data, particularly for the excited states. While slight discrepancies are observed for other excited states ( and ), overall agreement remains significant. Additionally, the study reveals that hexadecapole deformation with different magnitudes have significant influences on the fusion cross-section. In cases where has a positive value, rotational levels beyond have minimal impact on the cross-section, resulting in a notable difference in the contribution of sequential channels. In contrast, for negative values, rotational energy levels up to the state substantially affect the fusion characteristics. Furthermore, the analysis extends to the estimation of the relative change () between the excited states and the ground state, both with and without considering coupling terms.

    nucl-thMod.Phys.Lett.A(2025)·0 citations
  9. 09

    Jet shape modification in a transport calculation

    Monideepa Maity🇮🇳 · Subrata Pal🇮🇳

    A precise quantification of the medium-modification of the high transverse momenta jets in relativistic heavy ion collisions rely on consistent modelling of elastic and inelastic energy loss suffered by the jet and the concurrent underlying medium evolution. We have developed a unified framework for jet and bulk medium evolution within a multiphase transport approach where the jets and medium share energy and momentum via multiple elastic scatterings and medium-induced gluon radiation during the parton transport. The formulation enables realistic predictions of jet based observables extended to a large radius of the jet cone in central Pb-Pb collisions at 5.02 TeV. The model provides reasonable quantitative agreement with the experimental data from inclusive jet suppression and the full jet shape function up to large radial distances induced by both the collisional and radiative jet energy loss and migration of the lost in the medium. We find that gradual degradation of jet energy through gluon emissions alters the energy-momentum evolution in the jet, essential to describe the entire range of jet shape ratio relative to proton-proton collisions. Pure collisional energy loss injects appreciable broadening and migration of the medium partons, resulting in an enhanced population at large angular distances in the jet-shape ratio.

    nucl-thhep-phPLB(2025)·0 citations
  10. 10

    Probing potential via its flow in hypernuclei-induced reaction

    Gao-Chan Yong🇨🇳

    The hyperon potential, particularly its behavior at high densities, is crucial for resolving the ``hyperon puzzle'' in neutron stars and for advancing our understanding of the strong interactions between strange and non-strange particles in high baryon density environments. Using the hadronic transport model AMPT-HC, hypernucleus-nucleus collision is studied. It is found that at beam energies below the threshold for hyperon production, the hyperon elliptic flow exhibits noticeable asymmetry between the positive and negative rapidity regions and is sensitive to the strength of the hyperon potential, especially in the large negative rapidity region. One can extract the hyperon potential approximately twice the saturation density based on the hyperon elliptic flow in the negative rapidity region, and the hyperon potential around the saturation density based on the hyperon elliptic flow in the positive rapidity region.

    nucl-thnucl-exPLB(2025)·2 citations
  11. 11

    Constraining the neutron star equation of state by including the isoscalar-vector and isovector-vector coupling using the Bayesian analysis

    Deepak Kumar🇮🇳 · Pradip Kumar Sahu🇮🇳

    We constrain the nuclear matter equation of state within the relativistic mean field model by including the isoscalar-vector and isovector-vector coupling term at a fundamental level using the Bayesian analysis. We used the nuclear saturation properties and recent astrophysical observations to constrain the dense matter equation of state. We obtained about 20000 sets of equations of states out of sampling about 60 millions sets of equations of states. All 20000 equations of states satisfy nuclear matter saturation properties at saturation densities and produces high mass neutron stars. In our findings, we find that the non-zero value of isoscalar-vector and isovector-vector coupling parameter and negative value of sigma meson self-coupling stiffen the equation of state. Our sets of equations of state produces neutron stars of mass larger than 2.5 M to include the recent gravitational waves observation GW190419.

    nucl-thastro-ph.HEhep-phhep-th2 citations
  12. 12

    Transverse momentum fluctuations as a probe of thermalization and collective dynamics of QGP

    Rupam Samanta🇵🇱 · Tribhuban Parida🇮🇳

    We study fluctuations of mean transverse momentum per particle () in ultrarelativistic heavy-ion collisions. We show that the steep fall in the variance of transverse momentum fluctuation in ultracentral Pb+Pb collision serves as a natural consequence of the thermalization of the QGP medium. We study the correlation between the spectra and which maps these fluctuations differentially and dubbed as . We highlight the importance of showing that it plays similar role as anisotropic flow when probing the collective nature of QGP.

    nucl-thnucl-exJ.Subatomic Part.Cosmol.(2025)·1 citation
  13. 13

    Dynamical coupled-channel models for hadron dynamics

    Michael Döring🇺🇸 · Johann Haidenbauer🇩🇪 · Maxim Mai🇺🇸 · Toru Sato🇯🇵

    Dynamical coupled-channel (DCC) approaches parametrize the interactions and dynamics of two and more hadrons and their response to different electroweak probes. The inclusion of unitarity, three-body channels, and other properties from scattering theory allows for a reliable extraction of resonance spectra and their properties from data. We review the formalism and application of the ANL-Osaka, the Juelich-Bonn-Washington, and other DCC approaches in the context of light baryon resonances from meson, (virtual) photon, and neutrino-induced reactions, as well as production reactions, strange baryons, light mesons, heavy meson systems, exotics, and baryon-baryon interactions. Finally, we also provide a connection of the formalism to study finite-volume spectra obtained in Lattice QCD, and review applications involving modern statistical and machine learning tools.

    nucl-thhep-lathep-phnucl-exPPNP(2026)·45 citations

Affiliations

first authorsco-authorsvia INSPIRE