PaperPanorama

Nuclear Theory·nucl-th

Wednesday·April 30, 2025

10 papers4 primary·6 cross-listed

  1. 01

    Nuclear responses with neural-network quantum states

    Elad Parnes🇮🇱 · Nir Barnea🇮🇱 · Giuseppe Carleo🇨🇭 · Alessandro Lovato🇺🇸 · Noemi Rocco🇺🇸 · Xilin Zhang🇺🇸

    We introduce a variational Monte Carlo framework that combines neural-network quantum states with the Lorentz integral transform technique to compute the dynamical properties of self-bound quantum many-body systems in continuous Hilbert spaces. While broadly applicable to various quantum systems, including atoms and molecules, in this initial application we focus on the photoabsorption cross section of light nuclei, where benchmarks against numerically exact techniques are available. Our accurate theoretical predictions are complemented by robust uncertainty quantification, enabling meaningful comparisons with experiments. We demonstrate that a simple nuclear Hamiltonian, based on a leading-order pionless effective field theory expansion and known to accurately reproduce the ground-state energies of nuclei with nucleons also provides a reliable description of the photoabsorption cross section.

    nucl-thcond-mat.dis-nnquant-phPRL(2026)·20 citations
  2. 02

    Application of the Holographic Equation of State for Numerical Modeling of the Evolution of Quark-Gluon Plasma

    A.V. Anufriev🇷🇺 · V.N. Kovalenko🇷🇺

    In this paper, we propose a method for numerical modeling of the nuclear matter properties within the framework of relativistic heavy-ion collisions using a holographic equation of state. Model's free parameters are calibrated using lattice results for quark masses approximating physical values and adjusted to match the Regge spectra of mesons. Numerical simulations are performed using the iEBE-MUSIC framework, which incorporates the MUSIC relativistic hydrodynamics solver. We modify the code by implementing a tabulated holographic equation of state, enabling simulations of quark-gluon plasma evolution with dynamically generated initial conditions via the 3D Monte Carlo Glauber Model. Finally, the spectra of produced hadrons are computed using a hybrid iSS+UrQMD approach at the freeze-out stage.

    nucl-thgr-qchep-phhep-thPhys.Atom.Nucl.(2026)·1 citation
  3. 03

    Investigation of the properties of excited states of even-even nuclei

    R.V.Jolos · E.A.Kolganova

    The commissioning of new sources of monochromatic -quanta will allow obtaining a large amount of new data on low-lying collective states of negative parity of even-even nuclei. The purpose of this work is to derive relations between observables characterizing the low-energy negative parity states in even-even nuclei and to investigate the dependence of E2 transitions between the low-energy collective states in these nuclei on the parity of states. The Hamiltonian of the Collective Model and the fermionic Q-phonon representation of the vectors of collective states are used. Relations between different E1 transition matrix elements are derived and the parity dependence of E2 transitions is investigated. Relations between the observables characterizing the low-lying collective states of both parities in even-even nuclei are obtained, which can be verified using experimental data produced by facilities generating intense monochromatic beams of -quanta.

    nucl-thPRC(2024)·2 citations
  4. 04

    A nuclear mass model rooted in chiral effective field theory

    C. Mishra🇺🇸 · A. Ekström🇸🇪 · G. Hagen🇺🇸 · M. Menickelly🇺🇸 · T. Papenbrock🇺🇸 · S. M. Wild🇺🇸

    We develop a nuclear mass model that is based on chiral effective field theory at next-to-next-to leading order. Nuclear binding energies are computed via the Hartree-Fock method using a Hamiltonian from delta-full chiral effective field theory. We employ Hartree-Fock emulators to adjust low-energy constants in the chiral interaction to binding energies of even-even nuclei. When applied to even-even nuclei with mass numbers the chiral mass model exhibits an overall root-mean-square deviation of MeV.

    nucl-th1 citation

Affiliations

first authorsco-authorsvia INSPIRE