PaperPanorama

Nuclear Theory·nucl-th

Wednesday·February 9, 2022

6 papers3 primary·3 cross-listed

  1. 01

    Finite-Volume Pionless Effective Field Theory for Few-Nucleon Systems with Differentiable Programming

    Xiangkai Sun🇺🇸 · William Detmold🇺🇸 · Di Luo🇺🇸 · Phiala E. Shanahan🇺🇸

    Finite-volume pionless effective field theory provides an efficient framework for the extrapolation of nuclear spectra and matrix elements calculated at finite volume in lattice QCD to infinite volume, and to nuclei with larger atomic number. In this work, it is demonstrated how this framework may be implemented via a set of correlated Gaussian wavefunctions optimised using differentiable programming and via solution of a generalised eigenvalue problem. This approach is shown to be significantly more efficient than a stochastic implementation of the variational method based on the same form of correlated Gaussian wavefunctions, yielding comparably accurate representations of the ground-state wavefunctions with an order of magnitude fewer terms. The efficiency of representation allows such calculations to be extended to larger systems than in previous work. The method is demonstrated through calculations of the binding energies of nuclei with atomic number in finite volume, matched to lattice QCD calculations at quark masses corresponding to MeV, and infinite-volume effective field theory calculations of systems based on this matching.

    nucl-thhep-lathep-phPRD(2022)·12 citations
  2. 02

    Bubble nuclei with shape coexistence in even-even isotopes of Hf to Hg

    Yong-Beom Choi · Chang-Hwan Lee · Myeong-Hwan Mun · Youngman Kim

    The shape of a nucleus is one of fundamental nuclear properties. We perform a systematic investigation of bubble nuclei that also exhibit shape coexistence in Hf, W, Os, Pt and Hg even-even isotopes using the deformed relativistic Hartree-Bogoliubov theory in continuum. For a systematic study, we first consider nuclear bubble structures and shape coexistence separately. We confirm that deformations and pairing correlations hinder bubble structures by comparing our results with those from relativistic continuum Hartree-Bogoliubov theory that assumes spherical symmetry in nuclei. We then predict candidate isotopes with both bubble structure and shape coexistence. We observe that the depletion fraction factor that characterizes bubble structure is mostly smaller in oblate deformation than in prolate, while some isotopes such as Os have bubble structures both in oblate and prolate deformations. We compare the proton single-particle energy levels for the candidates of shape coexistence both with only prolate bubble structure and with prolate and oblate bubble structures.

    nucl-thPRC(2022)·37 citations
  3. 03

    Nucleon-nucleon scattering up to next-to-next-to-leading order in manifestly Lorentz-invariant chiral effective field theory: peripheral phases

    Xiu-Lei Ren🇩🇪 · E. Epelbaum🇩🇪 · J. Gegelia🇩🇪

    We study the nucleon-nucleon interaction up to next-to-next-to-leading order using time-ordered perturbation theory in the framework of manifestly Lorentz-invariant chiral effective field theory. We present the two-pion exchange contribution at one-loop level, which is consistent with the corresponding non-relativistic expressions in the large-nucleon-mass limit. Using the Born series truncated at one-loop order, we calculate the phase shifts and mixing angles of the partial waves with the angular momentum . Comparing with the results of non-relativistic formulation, we find an improved description of the phase shifts for some waves such as the one. For the other partial waves, both approaches show the globally similar results.

    nucl-thPRC(2022)·13 citations

Affiliations

first authorsco-authorsvia INSPIRE