PaperPanorama

Nuclear Theory·nucl-th

Monday·October 10, 2022

7 papers4 primary·3 cross-listed

  1. 01

    Studying the impact of the nucleon size in relativistic heavy-ion collisions

    João Paulo Picchetti🇧🇷

    The hydrodynamic stage of relativistic heavy-ion collisions simulations requires an energy density profile of the system as an initial condition. In the process of converting the two colliding nuclei into such an energy distribution, some specification about the of their constituent nucleons inevitably has to be made. Nucleons are commonly modeled as bidimensional Gaussians, and the Gaussian width (the nucleon-width) is a free parameter of the simulation. A best-fit value of the nucleon-width can be inferred by Bayesian Analyses, where the model is confronted with experimental data. Some of the most recent analyses have obtained surprisingly large values for the nucleon width parameter, exceeding in over 50 % the current value for the proton charged radius. This motivates the development of a better understanding of the role played by this parameter inside the simulation. In this work, we perform simulations of Pb-Pb collisions at = 2.76 TeV using a state-of-the-art hybrid simulation chain, using three different values of the nucleon width inside the initial condition generator TENTo, and systematically investigate its effects on the initial condition characteristics and observables. The nucleon-width strongly affects the eccentricity harmonics and the gradients in the initial condition. The of particles in the simulation using = 0.5 fm is much larger than experimental data. We associate this to the combination of stronger gradients in the initial condition and the coupling of a conformal pre-equilibrium dynamics to the hydrodynamic simulation. Our findings suggest that the large values of the nucleon width returned by recent Bayesian Analyses were necessary to lower the mean transverse momentum, by damping the gradients in the initial condition.

    nucl-thhep-ph0 citations
  2. 02

    Slope parameters determined from CREX and PREX2 (published in Results in Physics)

    Shingo Tagami · Tomotsugu Wakasa · Masanobu Yahiro

    [Background] Very lately, the CREX group presents a skin value ~fm. Meanwhile, the PREX group reported a skin value ~fm. In our previous paper, we determined both the -- relation and the -- one, using 206 EoSs, where is a slope parameter. [Purpose] We determine from and , using 207 EoSs. [Results] The yields ~MeV and the does ~MeV. [Conclusion] There is no overlap between and . This is a big problem to be solved.

    nucl-th6 citations
  3. 03

    Ab initio calculation of charge symmetry breaking in and -hypernuclei

    Hoai Le🇩🇪 · Johann Haidenbauer🇩🇪 · Ulf-G. Meißner🇩🇪 · Andreas Nogga🇩🇪

    The separation energies of the isospin triplet , , Be, and the doublet Li, Be are investigated within the no-core shell model. Calculations are performed based on a hyperon-nucleon potential derived from chiral effective field theory at next-to-leading order. The potential includes the leading charge-symmetry breaking (CSB) interaction in the N channel, whose strength has been fixed to the experimentally known difference of the separation energies of the mirror hypernuclei and . It turns out that the CSB predicted for the systems is small and agrees with the splittings deduced from the empirical binding energies within the experimental uncertainty. In case of the doublet, the computed CSB is somewhat larger than the available experimental value. Using other experimental input for can change this prediction moving it closer to experiment.

    nucl-thPRC(2023)·26 citations
  4. 04

    Towards a unified treatment of parity violation in low-energy nuclear processes

    Susan Gardner🇺🇸 · Girish Muralidhara🇺🇸

    We revisit the unified treatment of low-energy hadronic parity violation espoused by Desplanques, Donoghue, and Holstein to the end of an ab initio treatment of parity violation in low-energy nuclear processes within the Standard Model. We use our improved effective Hamiltonian and precise non-perturbative assessments of the quark charges of the nucleon within lattice QCD to make new assessments of the parity-violating meson-nucleon coupling constants. Comparing with recent, precise measurements of hadronic parity violation in few-body nuclear reactions, we find improved agreement with these experimental results, though some tensions remain. We thus note the broader problem of comparing low-energy constants from nuclear and few-nucleon systems, considering, too, unresolved theoretical issues in connecting an ab initio, effective Hamiltonian approach to chiral effective theories. We note how future experiments and lattice QCD studies could sharpen the emerging picture, promoting the study of hadronic parity violation as a laboratory for testing ``end-to-end'' theoretical descriptions of weak processes in hadrons and nuclei at low energies.

    nucl-thhep-phnucl-exPRC(2023)·9 citations
  5. 05

    Single Inclusive Hadron Production in DIS at Small : Next to Leading Order Corrections

    Filip Bergabo🇺🇸 · Jamal Jalilian-Marian🇺🇸

    We calculate the one-loop corrections to single inclusive hadron production in Deep Inelastic Scattering (DIS) at small in the forward rapidity region using the Color Glass Condensate formalism. We show that the divergent parts of the next to leading order (NLO) corrections either cancel among each other or lead to (rapidity) evolution of the leading order (LO) dipole cross section according to the JIMWLK evolution equation and DGLAP evolution of the parton-hadron fragmentation function. The remaining finite parts constitute the NLO () corrections to the LO single inclusive hadron production cross section in DIS at small .

    hep-phnucl-thJHEP(2023)·49 citations
  6. 06

    Confronting anomalous kaon correlations measured in Pb-Pb collisions at TeV

    Joseph I. Kapusta🇺🇸 · Scott Pratt🇺🇸 · Mayank Singh🇺🇸

    Measurements of the dynamical correlations between neutral and charged kaons in central Pb-Pb collisions at TeV by the ALICE Collaboration display anomalous behavior relative to conventional heavy-ion collision simulators such as AMPT, EPOS, and HIJING. We consider other conventional statistical models, none of which can reproduce the magnitude and centrality dependence of the correlations. The data can be reproduced by coherent emission from domains which grow in number and volume with increasing centrality. We show that the energy released by condensation of strange quarks may be sufficient to explain the anomaly.

    hep-phnucl-thPRC(2023)·8 citations
  7. 07

    Editorial: New Frontiers in Holographic Duality -- From quantum complexity and black holes to hydrodynamics and neutron stars

    Ayan Mukhopadhyay🇮🇳

    Over the last twenty five years, holographic duality has revolutionised our understanding of gauge theories, quantum many-body systems and also quantum black holes. This topical issue is a collection of review articles on recent advances in fundamentals of holographic duality and its applications with special focus on a few areas where it is inter-disciplinary to a large measure. The aim is to provide a sufficient background on relevant phenomenology and other theoretical areas such as quantum information theory to researchers whose primary expertise is in quantum fields, strings and gravity, and also the necessary concepts and methods of holography to researchers in other fields, so that these recent developments could be grasped and hopefully further developed by a wider community. The topics relating to fundamental aspects include understanding of bulk spacetime reconstruction in holography in the framework of quantum error correction along with the spectacular advances in resolution of the information paradoxes of quantum black holes; quantum complexity and its fundamental role in connecting holography with quantum information theory; theoretical and experimental advances in quantum simulators for information mirroring and scrambling in quantum black holes, and teleportation via wormholes; and a pedagogical review on wormholes also. The topics related to applied holography include applications to hydrodynamic attractor and its phenomenological implications, modelling of equation of state of QCD matter in neutron stars, and finally estimating hadronic contribution to light-by-light scattering for theoretical computation of the muon's .

    hep-thcond-mat.str-elhep-phnucl-th+1EPJC(2022)·1 citation

Affiliations

first authorsco-authorsvia INSPIRE