Study of nuclei around Z = 28 by large-scale shell model calculations

We study Cr and Ni isotopes by using Monte Carlo shell model (MCSM) calculations in a pfg9d5 model space. In the MCSM, a wave function is represented as a linear combination of angular-momentum- and parity-projected deformed Slater determinants(MCSM bases) and we can obtain eigenstates in a large mo...

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Main Authors: Tsunoda Yusuke, Otsuka Takaharu, Shimizu Noritaka, Honma Michio, Utsuno Yutaka
Format: Article
Language:English
Published: EDP Sciences 2014-03-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20146602105
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author Tsunoda Yusuke
Otsuka Takaharu
Shimizu Noritaka
Honma Michio
Utsuno Yutaka
author_facet Tsunoda Yusuke
Otsuka Takaharu
Shimizu Noritaka
Honma Michio
Utsuno Yutaka
author_sort Tsunoda Yusuke
collection DOAJ
description We study Cr and Ni isotopes by using Monte Carlo shell model (MCSM) calculations in a pfg9d5 model space. In the MCSM, a wave function is represented as a linear combination of angular-momentum- and parity-projected deformed Slater determinants(MCSM bases) and we can obtain eigenstates in a large model space such as pfg9d5 space. We study intrinsic shapes of nuclei by using deformations of MCSM bases before projection. We show results of MCSM calculations in Cr and Ni isotopes and a level scheme of 68Ni and discuss the magicity of N = 40 in Cr and Ni isotopes and shape coexistence in 68Ni.
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spelling doaj.art-c91396e713604c6cadb282bce3d4d70d2022-12-21T20:07:32ZengEDP SciencesEPJ Web of Conferences2100-014X2014-03-01660210510.1051/epjconf/20146602105epjconf_inpc2013_02105Study of nuclei around Z = 28 by large-scale shell model calculationsTsunoda Yusuke0Otsuka TakaharuShimizu Noritaka1Honma Michio2Utsuno Yutaka3Department of Physics, University of TokyoCenter for Nuclear Study, University of TokyoCenter for Mathematical Sciences, University of Aizu, Ikki-machiAdvanced Science Research Center, Japan Atomic Energy AgencyWe study Cr and Ni isotopes by using Monte Carlo shell model (MCSM) calculations in a pfg9d5 model space. In the MCSM, a wave function is represented as a linear combination of angular-momentum- and parity-projected deformed Slater determinants(MCSM bases) and we can obtain eigenstates in a large model space such as pfg9d5 space. We study intrinsic shapes of nuclei by using deformations of MCSM bases before projection. We show results of MCSM calculations in Cr and Ni isotopes and a level scheme of 68Ni and discuss the magicity of N = 40 in Cr and Ni isotopes and shape coexistence in 68Ni.http://dx.doi.org/10.1051/epjconf/20146602105
spellingShingle Tsunoda Yusuke
Otsuka Takaharu
Shimizu Noritaka
Honma Michio
Utsuno Yutaka
Study of nuclei around Z = 28 by large-scale shell model calculations
EPJ Web of Conferences
title Study of nuclei around Z = 28 by large-scale shell model calculations
title_full Study of nuclei around Z = 28 by large-scale shell model calculations
title_fullStr Study of nuclei around Z = 28 by large-scale shell model calculations
title_full_unstemmed Study of nuclei around Z = 28 by large-scale shell model calculations
title_short Study of nuclei around Z = 28 by large-scale shell model calculations
title_sort study of nuclei around z 28 by large scale shell model calculations
url http://dx.doi.org/10.1051/epjconf/20146602105
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