PaperPanorama

Nuclear Theory·nucl-th

Wednesday·December 6, 2023

11 papers3 primary·8 cross-listed

  1. 01

    [Submitted on 5 Dec 2023]

    Difference in peripherality of the inclusive (p, p'x) and (d, d'x) reactions and its implications for phenomenological reaction model

    Hibiki Nakada · Shinsuke Nakayama · Kazuki Yoshida · Yukinobu Watanabe · Kazuyuki Ogata

    Previous studies have revealed the importance of introducing surface correction into a phenomenological model for inclusive (n, n'x) and (p, p'x) reactions. These findings have contributed significantly to the improvement of nuclear data evaluation. However, the necessity for the surface correction in an inclusive (d, d'x) reaction has hardly been investigated. The purpose of this study is to investigate the difference in the peripherality of the (p, p'x) and (d, d'x) reactions by a theoretical analysis using a quantum mechanical model, and to obtain a theoretical basis on the surface correction in the (d, d'x) reaction. The energy spectra and their radial distributions for the (p, p'x) and (d, d'x) reactions are calculated by the one-step semiclassical distorted wave model. The radial distribution of the energy spectra for the (d, d'x) reaction is shifted toward the outer region of the nucleus compared to the (p, p'x) reaction. Based on this finding, we consider a larger surface correction into a phenomenological model for the (d, d'x) reaction than that for the (p, p'x) reaction, and calculated values reproduce the experimental (d, d'x) spectra well. The peripherality of the (d, d'x) reaction is more prominent than that of the (p, p'x) reaction. The stronger surface correction thus should be introduced for the (d, d'x) reaction than for the (p, p'x) reaction.

    Comments:
    8 pages, 6 figures
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2312.02502 [pdf]
    PRC(2024)·0 citations
  2. 02

    [Submitted on 5 Dec 2023]

    Conserved energy-momentum tensor for real-time lattice simulations

    Kirill Boguslavski🇦🇹 · Tuomas Lappi🇫🇮 · Jarkko Peuron🇫🇮 · Pragya Singh🇫🇮

    We derive an expression for the energy-momentum tensor in the discrete lattice formulation of pure glue QCD. The resulting expression satisfies the continuity equation for energy conservation up to numerical errors with a symmetric procedure for the time discretization. In the case of the momentum conservation equation, we obtain an expression that is of higher accuracy in lattice spacing () than the naive discretization where fields in the continuum expressions are replaced by discretized counterparts. The improvements are verified by performing numerical tests on the derived expressions using classical real-time lattice gauge theory simulations. We demonstrate substantial reductions in relative error of one to several orders of magnitude compared to a naive discretization for both energy and momentum conservation equations. We expect our formulation to have applications in the area of pre-equilibrium dynamics in ultrarelativistic heavy ion collisions, in particular for the extraction of transport coefficients such as shear viscosity.

    Comments:
    19 pages, 7 figures
    Subjects:
    Nuclear Theory (nucl-th); High Energy Physics — Lattice (hep-lat); High Energy Physics — Phenomenology (hep-ph)
    arXiv:
    2312.02726 [pdf]
    EPJC(2024)·1 citation
  3. 03

    [Submitted on 5 Dec 2023]

    High- isomers in a self-consistent mean-field approach with the Gogny force

    L.M. Robledo

    High- isomeric states in even-even and odd-mass nuclei are described within a mean-field framework with full blocking and using the finite range Gogny force. Theoretical calculations of low energy spectra of several nuclei across the nuclear chart are compared with equal filling approximation results and experimental data. Despite the global character of the employed interactions, a good agreement between the different many-body methods and experimental data is found.

    Comments:
    12 pages
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2312.02729 [pdf]
    J.Phys.G(2024)·3 citations
  4. 04

    [Submitted on 4 Dec 2023] (cross-list from hep-ph)

    Learning PDFs through Interpretable Latent Representations in Mellin Space

    Brandon Kriesten🇺🇸 · T. J. Hobbs🇺🇸

    Representing the parton distribution functions (PDFs) of the proton and other hadrons through flexible, high-fidelity parametrizations has been a long-standing goal of particle physics phenomenology. This is particularly true since the chosen parametrization methodology can play an influential role in the ultimate PDF uncertainties as extracted in QCD global analyses; these, in turn, are often determinative of the reach of experiments at the LHC and other facilities to non-standard physics, including at large , where parametrization effects can be significant. In this study, we explore a series of encoder-decoder machine-learning (ML) models with various neural-network topologies as efficient means of reconstructing PDFs from meaningful information stored in an interpretable latent space. Given recent effort to pioneer synergies between QCD analyses and lattice-gauge calculations, we formulate a latent representation based on the behavior of PDFs in Mellin space, i.e., their integrated moments, and test the ability of various models to decode PDFs from this information faithfully. We introduce a numerical package, , which implements several encoder-decoder models to reconstruct PDFs with high fidelity and use this tool to explore strengths and pitfalls of neural-network approaches to PDF parametrization. We additionally dissect patterns of learned correlations between encoded Mellin moments and reconstructed PDFs which suggest opportunities for further improvements to ML-based approaches to PDF parametrizations and uncertainty quantification.

    Comments:
    22 pages, 11 figures; updated link to public code, https://github.com/ML4HEP-Theory/PDFDecoder
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Lattice (hep-lat); Nuclear Theory (nucl-th)
    arXiv:
    2312.02278 [pdf]
    PRD(2025)·14 citations
  5. 05

    [Submitted on 4 Dec 2023] (cross-list from hep-ph)

    Hints of Entanglement Suppression in Hyperon-Nucleon Scattering

    Qiaofeng Liu🇺🇸 · Ian Low🇺🇸

    Hyperon ()-nucleon () interactions are crucial for understanding the existence of neutron stars heavier than two solar masses. Amid renewed experimental efforts, we study scatterings from the perspective of quantum information, focusing on whether spin entanglement is suppressed in the s-wave channel, which is observed in scattering and leads to enhanced global symmetries. Using global fits of phase shifts from experimental data, we find hints of entanglement suppression among the eight flavor channels in the strangeness sector, similar to the case. One exception is the channel, where conflicting global fits lead to inconclusive outcome. We then propose ''quantum'' observables in scattering to help resolve the differing global fits.

    Comments:
    6 pages, 4 figures
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Experiment (hep-ex); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th); Quantum Physics (quant-ph)
    arXiv:
    2312.02289 [pdf]
    PLB(2024)·36 citations
  6. 06

    [Submitted on 5 Dec 2023] (cross-list from quant-ph)

    Calculation of Relativistic Single-Particle States

    D. Wingard · B. Kónya · Z.Papp

    A computational method is proposed to calculate bound and resonant states by solving the Klein-Gordon and Dirac equations for real and complex energies, respectively. The method is an extension of a non-relativistic one, where the potential is represented in a Coulomb-Sturmian basis. This basis facilitates the exact analytic evaluation of the Coulomb Green's operator in terms of a continued fraction. In the extension to relativistic problems, we cast the Klein-Gordon and Dirac equations into an effective Schrödinger form. Then the solution method is basically an analytic continuation of non-relativistic quantities like the angular momentum, charge, energy and potential into the effective relativistic counterparts.

    Comments:
    10 pages
    Subjects:
    Quantum Physics (quant-ph); Mathematical Physics (math-ph); math.MP (math.MP); Nuclear Theory (nucl-th)
    arXiv:
    2312.02500 [pdf]
    Few Body Syst.(2023)·0 citations
  7. 07

    [Submitted on 5 Dec 2023] (cross-list from hep-th)

    Stress inside the pion in holographic light-front QCD

    Yang Li🇨🇳 · James P. Vary🇺🇸

    In this work, we propose a method to compute the gravitational form factor in holographic QCD by exploiting the remarkable correspondence between semi-classical light-front QCD and semi-classical field theories in wrapped spacetime in 5D. The use of light-front holography bridges physics at large as attained in light-front QCD and physics at small where the coupling to scalar and tensor fields, i.e. glueballs, are dominant. As an application, we compute the -term for the pion, and compare the results with recent lattice simulations.

    Comments:
    6 pages, 1 figure. Published on PRD as a letter
    Subjects:
    High Energy Physics — Theory (hep-th); High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2312.02543 [pdf]
    PRD(2024)·25 citations
  8. 08

    [Submitted on 5 Dec 2023] (cross-list from hep-ph)

    Shedding light on charmonium

    Zhiguo Wang🇨🇳 · Meijian Li🇪🇸 · Yang Li🇨🇳 · James P. Vary🇺🇸

    We investigate E1 radiative transitions within charmonium in a relativistic approach based on light-front QCD. In quantum field theory, two sets of processes are pure E1: () and (), both involving the -wave charmonia. We compute the E1 radiative decay widths as well as the corresponding transition form factors of various processes including those involving states. These observables provide an access to the microscopic structures of the -wave charmonium. We show that our parameter-free predictions are in excellent agreement with the experimental measurements as well as lattice simulations whenever available.

    Comments:
    Values of decay widths are provided in the supplementary file
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2312.02604 [pdf]
    PRD(2024)·7 citations
  9. 09

    [Submitted on 5 Dec 2023] (cross-list from astro-ph.IM)

    A Framework for Exploring Nuclear Physics Sensitivity in Numerical Simulations

    Zhi Chen · Eric T. Johnson · Max Katz · Alexander Smith Clark · Brendan Boyd · Michael Zingale

    We describe the AMReX-Astrophysics framework for exploring the sensitivity of astrophysical simulations to the details of a nuclear reaction network, including the number of nuclei, choice of reaction rates, and approximations used. This is explored by modeling a simple detonation with the Castro simulation code. The entire simulation methodology is open-source and GPU-enabled.

    Subjects:
    Instrumentation and Methods for Astrophysics (astro-ph.IM); Nuclear Theory (nucl-th)
    arXiv:
    2312.02836 [pdf]
    J.Phys.Conf.Ser.(2024)·1 citation
  10. 10

    [Submitted on 5 Dec 2023] (cross-list from hep-lat)

    Shallow Bound States and Hints for Broad Resonances with Quark Content in - and - Scattering from Lattice QCD

    Constantia Alexandrou🇨🇾 · Jacob Finkenrath🇨🇾 · Theodoros Leontiou🇨🇾 · Stefan Meinel🇺🇸 · Martin Pflaumer🇩🇪 · Marc Wagner🇩🇪

    We present the first determination of the energy dependence of the - and - isospin-0, -wave scattering amplitudes both below and above the thresholds using lattice QCD, which allows us to investigate rigorously whether mixed bottom-charm tetraquarks exist as bound states or resonances. The scattering phase shifts are obtained using Lüscher's method from the energy spectra in two different volumes. To ensure that no relevant energy level is missed, we use large, symmetric and correlation matrices that include, at both source and sink, - scattering operators with the lowest three or four possible back-to-back momenta in addition to local operators. We fit the energy dependence of the extracted scattering phase shifts using effective-range expansions. We observe sharp peaks in the - scattering rates close to the thresholds, which are associated with shallow bound states, either genuine or virtual, a few MeV or less below the - thresholds. In addition, we find hints for resonances with masses of order MeV above the thresholds and decay widths of order MeV.

    Comments:
    5 pages + 10 pages of references and supplemental material. Added estimates of bound-state probabilities and improved calculation of bound-state mass uncertainties
    Subjects:
    High Energy Physics — Lattice (hep-lat); High Energy Physics — Experiment (hep-ex); High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2312.02925 [pdf]
    PRL(2024)·36 citations
  11. 11

    [Submitted on 5 Dec 2023] (cross-list from hep-lat)

    The Chiral Separation Effect from lattice QCD at the physical point

    Bastian B. Brandt🇩🇪 · Gergely Endrődi🇩🇪 · Eduardo Garnacho-Velasco🇩🇪 · Gergely Markó🇩🇪

    In this paper we study the Chiral Separation Effect by means of first-principles lattice QCD simulations. For the first time in the literature, we determine the continuum limit of the associated conductivity using 2+1 flavors of dynamical staggered quarks at physical masses. The results reveal a suppression of the conductivity in the confined phase and a gradual enhancement toward the perturbative value for high temperatures. In addition to our dynamical setup, we also investigate the impact of the quenched approximation on the conductivity, using both staggered and Wilson quarks. Finally, we highlight the relevance of employing conserved vector and anomalous axial currents in the lattice simulations.

    Comments:
    26 pages, 8 figures
    Subjects:
    High Energy Physics — Lattice (hep-lat); High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Theory (hep-th); Nuclear Theory (nucl-th)
    arXiv:
    2312.02945 [pdf]
    JHEP(2024)·16 citations

Affiliations

first authorsco-authorsvia INSPIRE