Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo

abstract: Spin-orbit interactions are important in determining nuclear structure. They lead to a shift in the energy levels in the nuclear shell model, which could explain the sequence of magic numbers in nuclei. Also in nucleon-nucleon scattering, the large nucleon polarization observed perpendicul...

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Other Authors: Zhang, Jie (Author)
Format: Doctoral Thesis
Language:English
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/2286/R.I.26870
id ndltd-asu.edu-item-26870
record_format oai_dc
spelling ndltd-asu.edu-item-268702018-06-22T03:05:36Z Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo abstract: Spin-orbit interactions are important in determining nuclear structure. They lead to a shift in the energy levels in the nuclear shell model, which could explain the sequence of magic numbers in nuclei. Also in nucleon-nucleon scattering, the large nucleon polarization observed perpendicular to the plane of scattering needs to be explained by adding the spin-orbit interactions in the potential. Their effects change the equation of state and other properties of nuclear matter. Therefore, the simulation of spin-orbit interactions is necessary in nuclear matter. The auxiliary field diffusion Monte Carlo is an effective and accurate method for calculating the ground state and low-lying exited states in nuclei and nuclear matter. It has successfully employed the Argonne v6' two-body potential to calculate the equation of state in nuclear matter, and has been applied to light nuclei with reasonable agreement with experimental results. However, the spin-orbit interactions were not included in the previous simulations, because the isospin-dependent spin-orbit potential is difficult in the quantum Monte Carlo method. This work develops a new method using extra auxiliary fields to break up the interactions between nucleons, so that the spin-orbit interaction with isospin can be included in the Hamiltonian, and ground-state energy and other properties can be obtained. Dissertation/Thesis Zhang, Jie (Author) Schmidt, Kevin E (Advisor) Alarcon, Ricardo (Committee member) Lebed, Richard (Committee member) Shumway, John (Committee member) Arizona State University (Publisher) Physics eng 83 pages Doctoral Dissertation Physics 2014 Doctoral Dissertation http://hdl.handle.net/2286/R.I.26870 http://rightsstatements.org/vocab/InC/1.0/ All Rights Reserved 2014
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Physics
spellingShingle Physics
Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo
description abstract: Spin-orbit interactions are important in determining nuclear structure. They lead to a shift in the energy levels in the nuclear shell model, which could explain the sequence of magic numbers in nuclei. Also in nucleon-nucleon scattering, the large nucleon polarization observed perpendicular to the plane of scattering needs to be explained by adding the spin-orbit interactions in the potential. Their effects change the equation of state and other properties of nuclear matter. Therefore, the simulation of spin-orbit interactions is necessary in nuclear matter. The auxiliary field diffusion Monte Carlo is an effective and accurate method for calculating the ground state and low-lying exited states in nuclei and nuclear matter. It has successfully employed the Argonne v6' two-body potential to calculate the equation of state in nuclear matter, and has been applied to light nuclei with reasonable agreement with experimental results. However, the spin-orbit interactions were not included in the previous simulations, because the isospin-dependent spin-orbit potential is difficult in the quantum Monte Carlo method. This work develops a new method using extra auxiliary fields to break up the interactions between nucleons, so that the spin-orbit interaction with isospin can be included in the Hamiltonian, and ground-state energy and other properties can be obtained. === Dissertation/Thesis === Doctoral Dissertation Physics 2014
author2 Zhang, Jie (Author)
author_facet Zhang, Jie (Author)
title Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo
title_short Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo
title_full Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo
title_fullStr Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo
title_full_unstemmed Spin Orbit Interactions in Nulcear Matter with Auxiliary Field Diffusion Monte Carlo
title_sort spin orbit interactions in nulcear matter with auxiliary field diffusion monte carlo
publishDate 2014
url http://hdl.handle.net/2286/R.I.26870
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