PaperPanorama

Nuclear Theory·nucl-th

Tuesday·November 29, 2022

15 papers7 primary·8 cross-listed

  1. 08

    Establishing the Range of Applicability of Hydrodynamics in High-Energy Collisions

    Victor E. Ambrus🇷🇴 · S. Schlichting🇩🇪 · C. Werthmann🇩🇪

    We simulate the space-time dynamics of high-energy collisions based on a microscopic kinetic description in the conformal relaxation time approximation, in order to determine the range of applicability of an effective description in relativistic viscous hydrodynamics. We find that hydrodynamics provides a quantitatively accurate description of collective flow when the average inverse Reynolds number is sufficiently small and the early pre-equilibrium stage is properly accounted for. We further discuss the implications of our findings for the (in)applicability of hydrodynamics in proton-proton, proton-nucleus and light nucleus collisions.

    hep-phnucl-thPRL(2023)·54 citations
  2. 09

    Opacity dependence of transverse flow, pre-equilibrium and applicability of hydrodynamics in heavy-ion collisions

    Victor E. Ambrus🇩🇪 · S. Schlichting🇩🇪 · C. Werthmann🇩🇪

    We evaluate the full opacity dependence of collective flow in high-energy heavy-ion collisions within a microscopic kinetic description based on the Boltzmann equation in the conformal relaxation time approximation. By comparing kinetic theory calculations to hydrodynamic and hybrid simulations for an average initial state, we point out shortcomings and inaccuracies of hydrodynamic models and present modified simulation setups to improve them.

    hep-phnucl-thPRD(2023)·36 citations
  3. 10

    Effective Chiral Magnetic Effect from Neutrino Radiation

    Naoki Yamamoto🇯🇵 · Di-Lun Yang🇹🇼

    We develop an approach to chiral kinetic theories for electrons close to equilibrium and neutrinos away from equilibrium based on a systematic power counting scheme for different timescales of electromagnetic and weak interactions. Under this framework, we derive electric and energy currents along magnetic fields induced by neutrino radiation in general nonequilibrium states. This may be regarded as an effective chiral magnetic effect (CME), which is present without a chiral chemical potential, unlike the conventional CME. We also consider the so-called gain region of core-collapse supernovae as an example and find that the effective CME enhanced by persistent neutrino emission in time is sufficiently large to lead to the inverse cascade of magnetic and fluid kinetic energies and observed magnitudes of pulsar kicks. Our framework may also be applicable to other dense-matter systems involving nonequilibrium neutrinos.

    hep-phastro-ph.HEnucl-thPRL(2023)·8 citations
  4. 11

    Toward nuclear physics from lattice QCD on quantum computers

    Arata Yamamoto🇯🇵 · Takumi Doi🇯🇵

    One of the ultimate missions of lattice QCD is to simulate atomic nuclei from the first principle of the strong interaction. This is an extremely hard task for the current computational technology, but might be reachable in coming quantum computing era. In this paper, we discuss the computational complexities of classical and quantum simulations of lattice QCD. It is shown that the quantum simulation scales better as a function of a nucleon number and thus will outperform for large nuclei.

    hep-latnucl-thquant-phPTEP(2024)·10 citations
  5. 12

    Elastic scattering of 3He+4He with SONIK

    S. N. Paneru · C. R. Brune · D. Connolly · D. Odell · M. Poudel · D. R. Phillips · J. Karpesky · B. Davids · C. Ruiz · A. Lennarz · U. Greife · M. Alcorta and 13 other authors

    Measurements of the elastic scattering cross section of 3He and 4He are important in order to improve constraints on theoretical models of 4He(3He,g)7Be, a key reaction in Big Bang nucleosynthesis and solar neutrino production. The astrophysical S-factor for this reaction is a significant source of uncertainty in the standard solar-model prediction of the 7Be and 8B solar neutrino fluxes. The elastic scattering measurements reported in the literature do not extend to low energies and lack proper uncertainty quantification. A new measurement of the 4He(3He,3He)4He reaction has been made at center-of-mass energies Ec.m. = 0.38-3.13 MeV using the Scattering of Nuclei in Inverse Kinematics (SONIK) scattering chamber: a windowless, extended gas target surrounded by an array of 30 collimated silicon charged particle detectors situated at TRIUMF. This is the first elastic scattering measurement of 3He+4He made below 500 keV and it has greater angular range and better precision than previous measurements. The elastic scattering data were analyzed using both R-matrix and Halo Effective Field Theory (Halo EFT) frameworks, and values of the s-wave scattering length and effective range were extracted. The resulting improvement in knowledge of the s-wave effective-range function at low energies will reduce the overall uncertainty in S34 at solar energies.

    nucl-exnucl-thPRC(2024)·12 citations
  6. 13

    Nature of in and decays

    Hao-Nan Wang🇨🇳 · Li-Sheng Geng🇨🇳 · Qian Wang🇨🇳 · Ju-Jun Xie🇨🇳

    We investigate the decays of and based on the picture where the resonance is strongly coupled to the channel. In addition to the decay mechanism where the resonance is formed from the pair hadronization with the short-distance interaction, we have also considered the rescattering diagrams in the long-distance scale, where and are formed from and separately. Because of the difference of the mass thresholds of charged and neutral channels, and the rather narrow width of the resonance, at the mass, the loop functions of and are much different. Taking this difference into account, the ratio of can be naturally obtained. Based on this result, we also evaluate the decay widths of . It is expected that future experimental measurements of these decays can be used to elucidate the nature of the resonance.

    hep-phhep-exnucl-exnucl-thChin.Phys.Lett.(2023)·14 citations
  7. 14

    AMY Lorentz invariant parton cascade -- the thermal equilibrium case

    Aleksi Kurkela🇳🇴 · Robin Törnkvist🇸🇪 · Korinna Zapp🇸🇪

    We introduce ALPACA, a Lorentz invariant parton cascade encoding the AMY effective kinetic theory of QCD at high temperatures. It solves the Boltzmann equation by explicitly simulating the evolution of parton ensembles corresponding to single events. We discuss how the effective masses and temperature entering the elastic collision and splitting/merging rates can be estimated from just a single event. We perform an extensive validation of the framework by showing that it reproduces the expected behaviour in thermal equilibrium.

    hep-phnucl-thEPJC(2024)·15 citations
  8. 15

    Gluon helicity distribution in the nucleon from lattice QCD and machine learning

    Tanjib Khan🇧🇩 · Tianbo Liu🇨🇳 · Raza Sabbir Sufian🇺🇸

    We present the first lattice QCD determination of the light cone gluon helicity correlation parton distribution function (PDF) with numerical evidence toward disfavoring negative gluon polarization in the nucleon. We present a solution for eliminating an inevitable contamination term that dominates the Euclidean correlations and makes determining gluon helicity PDF unfeasible. The proposed synergy between lattice QCD and artificial intelligence offers a superior platform to alleviate the defining challenge of extracting quark and gluon PDFs from the lattice data that are available in a limited domain due to a finite range of accessible hadron momenta. We suggest a systematically improvable method to extract PDFs from the lattice data, independent of inadequate parametrizations. The result of the gluon helicity will improve our understanding of the role of spin in the strong interaction and the nucleon spin structure.

    hep-lathep-phnucl-thPRD(2023)·34 citations

Affiliations

first authorsco-authorsvia INSPIRE