PaperPanorama

Nuclear Theory·nucl-th

Tuesday·November 25, 2025

20 papers7 primary·13 cross-listed

  1. 01

    [Submitted on 22 Nov 2025]

    Two-pion exchange contributions to the relativistic chiral nuclear force at NLO

    Jun-Xu Lu🇨🇳 · Li-Sheng Geng🇨🇳

    We present the two-pion exchange contributions to the nucleon-nucleon interaction up to next-to-next-to-next-to leading order (NLO) in covariant baryon chiral perturbation theory. Both one-loop and two-loop diagrams are calculated with the spectral functional regularization. We show that the phase shifts for partial waves with total angular momentum are in better agreement with the partial wave analysis from the Nijmegen or the SAID group than their NLO counterparts. In addition, the relativistic chiral force exhibits better convergence than its non-relativistic counterpart, suggesting the importance of relativistic corrections.

    Comments:
    14 pages, 10 figures
    Subjects:
    Nuclear Theory (nucl-th); High Energy Physics — Phenomenology (hep-ph); Nuclear Experiment (nucl-ex)
    arXiv:
    2511.18023 [pdf]
    PRC(2026)·2 citations
  2. 02

    [Submitted on 22 Nov 2025]

    Quantum and classical analyses of intertwined phase transitions in odd-mass Nb isotopes

    A. Leviatan

    Quantum phase transitions (QPTs) in odd-mass Nb isotopes are investigated in the framework of the interacting boson-fermion model with configuration mixing. A quantum analysis reveals a Type I QPT (gradual shape-evolution within the intruder configuration) superimposed on a Type II QPT (abrupt crossing of normal and intruder states), thus demonstrating the occurrence of intertwined QPTs. A classical analysis highlights the implications for the single particle motion in the deformed field generated by the even-even Zr cores.

    Comments:
    8 pages, 9 figures, Proceedings 14th International Spring Seminar on Nuclear Physics: "Cutting-Edge Developments in Nuclear Structure Physics", May 19-23, 2025, Ischia, Italy
    Subjects:
    Nuclear Theory (nucl-th); Quantum Physics (quant-ph)
    arXiv:
    2511.18095 [pdf]
    EPJ Web Conf.(2025)·0 citations
  3. 03

    [Submitted on 22 Nov 2025]

    Nuclear structure study with two- and three-nucleon contact interactions derived within low-energy EFT

    Songlin Lyu · Francesco Amodio · Giovanni De Gregorio · Nunzio Itaco · Luigi Coraggio

    We present the results of the application of a nuclear potential consisting of two- and three-nucleon contact interactions in nuclear structure investigations. The nuclear Hamiltonian has been derived for a very low-energy regime within the framework of the effective field theory, its low-energy constants have been fitted to a few low-energy nucleon-nucleon experimental observables and the deuteron and 3H binding energies. Our goal is to validate the ability of this Hamiltonian to reproduce some important features of open-shell nuclei, and to this end we derive effective shell-model Hamiltonians for nuclei in the p- and sd-shell mass regions. The results of shell-model calculations with these effective Hamiltonians are then compared with experiment, and also with those obtained with a nuclear Hamiltonian derived within chiral perturbation theory, that includes also terms with one- and two-pion exchanges.

    Comments:
    8 pages, 6 figures, to be published in the Proceedings of the 14th International Spring Seminar on Nuclear Physics "Cutting-Edge Developments in Nuclear Structure Physics"
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2511.18129 [pdf]
    EPJ Web Conf.(2025)·0 citations
  4. 04

    [Submitted on 23 Nov 2025]

    Systematic investigation on the superheavy nucleus formation in the reactions of Ca, Ti, V and Cr on actinide nuclei

    Zi-Han Wang · Peng-Hui Chen · Ya-Ling Zhang · Ming-Hui Huang · Zhao-Qing Feng

    The synthesis of superheavy elements strongly relies on the competition of the quasifission and fusion fission dynamics in the fusion-evaporation reactions. The systematics on the formation of superheavy nuclei in the Ca, Ti, V and Cr induced fusion reactions on actinide nuclei Th, Pa, U, Np, Pu, Am, Cm, Bk, Cf has been thoroughly investigated with the dinuclear system model by including the cluster transfer and coupling to the dynamical evolution of the quadrupole deformation parameters. The uncertainties of the fusion-evaporation excitation functions with the mass models of FRDM2012, KTUY05, LDM1966, SkyHFB, WS4 are investigated and compared with the available experimental data from Dubna, GSI, Berkeley and RIKEN. The production cross sections, optimal evaporation channels and beam energies in the synthesis of superheavy elements Z = 119 and 120 were predicted and compared for the different mass models in the reactions of , , , , , , respectively.

    Comments:
    17 pages, 10 figures, 2 tables
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2511.18337 [pdf]
    PRC(2026)·2 citations
  5. 05

    [Submitted on 23 Nov 2025]

    From Classical to Quantum Machine Learning: Different Approaches in Fission Barrier Height Estimation

    Serkan Akkoyun🇬🇧 · Cafer Mert Yeşilkanat🇵🇰 · Paul Stevenson🇬🇧

    The fission barrier energy is a fundamental property of nuclear structure that governs the stability of nuclei against fission, directly affecting their spontaneous fission half-lives and the formation of superheavy elements. However, because it can only be measured indirectly, it also enables the emergence of alternative, complementary, fast, and accurate prediction tools for traditional theoretical models. In this study, we examine the use of classical, hybrid, and quantum support vector regression (SVR) approaches to estimate fission barrier heights, starting from fundamental nuclear properties and their derived additional properties. For this purpose, eight different SVR-based approaches are considered: (i) Classical SVR, (ii) Enhanced Classical SVR with polynomial and trigonometric feature extensions, (iii) Quantum-Inspired SVR, (iv) Hybrid SVR, (v) Enhanced Hybrid SVR, (vi) Quantum Core SVR, (vii) Fixed-Parameter Quantum Feature Map SVR, and (viii) Pure Quantum SVR. The models were trained and tested on a dataset of 317 isotopes in the Z (atomic number) range of 98-126, encompassing the actinide and superheavy regions. The model performance was evaluated in terms of R2, RMSE, MAE, and training-test R2 gap. The results show that the hybrid model achieves the best overall performance. However, while quantum-enhanced approaches are still limited by circuit depth and optimization precision, they achieve competitive accuracy comparable to classical results. Considering future developments in quantum hardware and algorithms, quantum approaches are expected to achieve considerable improvements. The findings suggest that quantum machine learning can supplement classical approaches and offer a promising path toward more accurate and efficient nuclear property predictions.

    Comments:
    24 pages, 8 figures
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2511.18350 [pdf]
    0 citations
  6. 06

    [Submitted on 24 Nov 2025]

    Impact of finite-range spin-orbit and tensor terms in Gogny EDF

    G. Zietek🇫🇷 · N. Pillet🇫🇷 · M. Anguiano🇪🇸 · P. Carpentier🇫🇷 · N. Dubray🇫🇷 · R. N. Bernard🇫🇷 · G. Blanchon🇫🇷 · D. Regnier🇫🇷

    Energy Density Functionals are of major interest for the study of the atomic nucleus as, coupled with mean-field and beyond N-body approaches, they are applicable to the whole nuclear chart, including superheavy elements. On the one hand, the growing need for nuclear data and, on the other hand, the large amount of experimental data on exotic nuclei explain the work carried out on these phenomenological forms of the nucleon-nucleon interaction to analyze the richness of the nuclear phenomena. In this paper, we propose a fully finite-range extension of the Gogny EDF, including a short-range spin-orbit term and a long-range tensor term. The original fitting protocol of the Gogny interaction has been adapted to include both finite range spin-orbit and tensor terms, adding new constraints and filters linked to relevant data. Nuclear matter, spectroscopic and fission properties are discussed, highlighting ways of improving EDFs when all spin and isospin exchanges are introduced with finite-range terms.

    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2511.18896 [pdf]
    PLB(2026)·5 citations
  7. 07

    [Submitted on 24 Nov 2025]

    The Landau-Migdal parameter and quenching factor from the analysis of the Gamow-Teller strength distributions in medium-heavy-mass doubly-closed-shell parent nuclei

    V.I. Bondarenko · M.H. Urin

    The Landau-Migdal parameter and quenching factor for the Gamow-Teller strength distributions in the 48Ca, 90Zr, 132Sn and 208Pb parent nuclei are deduced from a detailed comparison of experimental distributions (obtained for the \b{eta}^((-)) -channel) with respective strength functions evaluated within the semi-microscopic Particle-Hole Dispersive Optical Model. The deduced values are compared with the values obtained in other studies.

    Comments:
    10 pages, 4 figures
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    2511.18972 [pdf]
    1 citation

Affiliations

first authorsco-authorsvia INSPIRE