Quartet correlations near the surface of $ N = Z $ nuclei

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Guo, Yixin, Naito, Tomoya, Tajima, Hiroyuki, Liang, Haozhao
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918113898921984
author Guo, Yixin
Naito, Tomoya
Tajima, Hiroyuki
Liang, Haozhao
author_facet Guo, Yixin
Naito, Tomoya
Tajima, Hiroyuki
Liang, Haozhao
contents We theoretically investigate Cooper quartet correlations in $ N = Z $ doubly-magic nuclei ($ {}^{40} \mathrm{Ca} $, $ {}^{100} \mathrm{Sn} $, and $ {}^{164} \mathrm{Pb} $). We first examine the quartet condensation fraction in infinite symmetric nuclear matter by using the quartet Bardeen-Cooper-Schrieffer theory. Together with the total nucleon density profiles of doubly-magic nuclei obtained from the Skyrme Hartree-Fock calculation, we discuss the spatial distribution of quartet correlations in finite nuclei within the local density approximation. Large quartet condensate fractions are found at the surface region of an atomic nucleus due to the strong neutron-proton attractive interaction responsible for the deuteron formation in vacuum. Moreover, we discuss a possible microscopic origin of the Wigner term in the context of nucleon-quartet scattering in dilute symmetric nuclear matter. The nucleon-quartet scattering effect on the Wigner term is numerically estimated to be about one order of magnitude of the total empirical strength, indicating the importance of multinucleon clusters in the symmetry energy and mass formula in addition to the neutron-proton pairing.
format Preprint
id arxiv_https___arxiv_org_abs_2503_07051
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quartet correlations near the surface of $ N = Z $ nuclei
Guo, Yixin
Naito, Tomoya
Tajima, Hiroyuki
Liang, Haozhao
Nuclear Theory
Quantum Gases
Atomic Physics
We theoretically investigate Cooper quartet correlations in $ N = Z $ doubly-magic nuclei ($ {}^{40} \mathrm{Ca} $, $ {}^{100} \mathrm{Sn} $, and $ {}^{164} \mathrm{Pb} $). We first examine the quartet condensation fraction in infinite symmetric nuclear matter by using the quartet Bardeen-Cooper-Schrieffer theory. Together with the total nucleon density profiles of doubly-magic nuclei obtained from the Skyrme Hartree-Fock calculation, we discuss the spatial distribution of quartet correlations in finite nuclei within the local density approximation. Large quartet condensate fractions are found at the surface region of an atomic nucleus due to the strong neutron-proton attractive interaction responsible for the deuteron formation in vacuum. Moreover, we discuss a possible microscopic origin of the Wigner term in the context of nucleon-quartet scattering in dilute symmetric nuclear matter. The nucleon-quartet scattering effect on the Wigner term is numerically estimated to be about one order of magnitude of the total empirical strength, indicating the importance of multinucleon clusters in the symmetry energy and mass formula in addition to the neutron-proton pairing.
title Quartet correlations near the surface of $ N = Z $ nuclei
topic Nuclear Theory
Quantum Gases
Atomic Physics
url https://arxiv.org/abs/2503.07051