Lattice simulation of nucleon distribution and shell closure in the proton-rich nucleus $^{22}$Si

Fuente: arXiv
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Autori principali: Zhang, Shuang, Elhatisari, Serdar, Meißner, Ulf-G., Shen, Shihang
Natura: Preprint
Pubblicazione: 2024
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author Zhang, Shuang
Elhatisari, Serdar
Meißner, Ulf-G.
Shen, Shihang
author_facet Zhang, Shuang
Elhatisari, Serdar
Meißner, Ulf-G.
Shen, Shihang
contents The proton-rich nucleus $^{22}$Si is studied using Nuclear Lattice Effective Field Theory with high-fidelity chiral forces. Our results indicate that $^{22}$Si is more tightly bound than $^{20}$Mg, thereby excluding the possibility of two-proton emission. The $Z = 14$ shell closure in $^{22}$Si is supported by the evolution of the $2^+$ state in the neighboring nuclei. We then focus on the charge radius and spatial distribution information of $^{22}$Si, considering the novel phenomena that may emerge due to the small two-proton separation energy and the shell closure. We present the distribution of the $14$ protons and $8$ neutrons obtained from our lattice simulation, revealing insights into the spatial arrangement of the nucleons. Moreover, the spatial localization of the outermost proton and neutron suggests that $^{22}$Si is a doubly magic nucleus. Furthermore, we develop the pinhole method based on the harmonic oscillator basis, which gives insight into the nuclear structure in terms of the shell model picture from lattice simulations. Our calculated occupation numbers support that $Z = 14$ and $N = 8$ are the shell closures and show that the $π1s_{1/2}$ orbital component is minor in $^{22}$Si.
format Preprint
id arxiv_https___arxiv_org_abs_2411_17462
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Lattice simulation of nucleon distribution and shell closure in the proton-rich nucleus $^{22}$Si
Zhang, Shuang
Elhatisari, Serdar
Meißner, Ulf-G.
Shen, Shihang
Nuclear Theory
Solar and Stellar Astrophysics
High Energy Physics - Lattice
Nuclear Experiment
The proton-rich nucleus $^{22}$Si is studied using Nuclear Lattice Effective Field Theory with high-fidelity chiral forces. Our results indicate that $^{22}$Si is more tightly bound than $^{20}$Mg, thereby excluding the possibility of two-proton emission. The $Z = 14$ shell closure in $^{22}$Si is supported by the evolution of the $2^+$ state in the neighboring nuclei. We then focus on the charge radius and spatial distribution information of $^{22}$Si, considering the novel phenomena that may emerge due to the small two-proton separation energy and the shell closure. We present the distribution of the $14$ protons and $8$ neutrons obtained from our lattice simulation, revealing insights into the spatial arrangement of the nucleons. Moreover, the spatial localization of the outermost proton and neutron suggests that $^{22}$Si is a doubly magic nucleus. Furthermore, we develop the pinhole method based on the harmonic oscillator basis, which gives insight into the nuclear structure in terms of the shell model picture from lattice simulations. Our calculated occupation numbers support that $Z = 14$ and $N = 8$ are the shell closures and show that the $π1s_{1/2}$ orbital component is minor in $^{22}$Si.
title Lattice simulation of nucleon distribution and shell closure in the proton-rich nucleus $^{22}$Si
topic Nuclear Theory
Solar and Stellar Astrophysics
High Energy Physics - Lattice
Nuclear Experiment
url https://arxiv.org/abs/2411.17462