Effect of number conservation on high spin states and nuclear deformation
The high spin yrast states up to J = 20/sup +/ in /sup 158,160,162/Er are studied in the framework of microscopic variational approach by employing the Hamiltonian with quadrupole plus pairing interactions. The effect of number conservation on deformation, calculated energy spectra and B (E2) values...
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Veröffentlicht in: | Phys. Rev., C; (United States) C; (United States), 1979-07, Vol.20 (1), p.372-380 |
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creator | Gunye, M. R. Warke, C. S. |
description | The high spin yrast states up to J = 20/sup +/ in /sup 158,160,162/Er are studied in the framework of microscopic variational approach by employing the Hamiltonian with quadrupole plus pairing interactions. The effect of number conservation on deformation, calculated energy spectra and B (E2) values is investigated. It is observed that the results are quite sensitive to the number conservation. The results of the calculations are in better agreement with the corresponding experimental data as compared to those obtained without number conservation. |
doi_str_mv | 10.1103/PhysRevC.20.372 |
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The results of the calculations are in better agreement with the corresponding experimental data as compared to those obtained without number conservation.</description><identifier>ISSN: 0556-2813</identifier><identifier>DOI: 10.1103/PhysRevC.20.372</identifier><language>eng</language><publisher>United States</publisher><subject>651813 - Nuclear Properties & Reactions, A=150-189, Theoretical- Energy Levels & Transitions- (-1987) ; BETA DECAY RADIOISOTOPES ; BETA-PLUS DECAY RADIOISOTOPES ; DAYS LIVING RADIOISOTOPES ; DEFORMATION ; E2-TRANSITIONS ; ELECTRON CAPTURE RADIOISOTOPES ; ENERGY LEVELS ; ENERGY SPECTRA ; ENERGY-LEVEL TRANSITIONS ; ERBIUM 158 ; ERBIUM 160 ; ERBIUM 162 ; ERBIUM ISOTOPES ; EVEN-EVEN NUCLEI ; EXCITED STATES ; HAMILTONIANS ; HARTREE-FOCK METHOD ; HIGH SPIN STATES ; HOURS LIVING RADIOISOTOPES ; INTERMEDIATE MASS NUCLEI ; ISOTOPES ; MANY-BODY PROBLEM ; MATHEMATICAL OPERATORS ; MULTIPOLE TRANSITIONS ; NUCLEAR DEFORMATION ; NUCLEAR PHYSICS AND RADIATION PHYSICS ; NUCLEI ; QUADRUPOLE MOMENTS ; QUANTUM OPERATORS ; RADIOISOTOPES ; RARE EARTH ISOTOPES ; RARE EARTH NUCLEI ; SPECTRA ; STABLE ISOTOPES ; VIBRATIONAL STATES ; YRAST STATES</subject><ispartof>Phys. 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Rev., C; (United States)</title><description>The high spin yrast states up to J = 20/sup +/ in /sup 158,160,162/Er are studied in the framework of microscopic variational approach by employing the Hamiltonian with quadrupole plus pairing interactions. The effect of number conservation on deformation, calculated energy spectra and B (E2) values is investigated. It is observed that the results are quite sensitive to the number conservation. The results of the calculations are in better agreement with the corresponding experimental data as compared to those obtained without number conservation.</description><subject>651813 - Nuclear Properties & Reactions, A=150-189, Theoretical- Energy Levels & Transitions- (-1987)</subject><subject>BETA DECAY RADIOISOTOPES</subject><subject>BETA-PLUS DECAY RADIOISOTOPES</subject><subject>DAYS LIVING RADIOISOTOPES</subject><subject>DEFORMATION</subject><subject>E2-TRANSITIONS</subject><subject>ELECTRON CAPTURE RADIOISOTOPES</subject><subject>ENERGY LEVELS</subject><subject>ENERGY SPECTRA</subject><subject>ENERGY-LEVEL TRANSITIONS</subject><subject>ERBIUM 158</subject><subject>ERBIUM 160</subject><subject>ERBIUM 162</subject><subject>ERBIUM ISOTOPES</subject><subject>EVEN-EVEN NUCLEI</subject><subject>EXCITED STATES</subject><subject>HAMILTONIANS</subject><subject>HARTREE-FOCK METHOD</subject><subject>HIGH SPIN STATES</subject><subject>HOURS LIVING RADIOISOTOPES</subject><subject>INTERMEDIATE MASS NUCLEI</subject><subject>ISOTOPES</subject><subject>MANY-BODY PROBLEM</subject><subject>MATHEMATICAL OPERATORS</subject><subject>MULTIPOLE TRANSITIONS</subject><subject>NUCLEAR DEFORMATION</subject><subject>NUCLEAR PHYSICS AND RADIATION PHYSICS</subject><subject>NUCLEI</subject><subject>QUADRUPOLE MOMENTS</subject><subject>QUANTUM OPERATORS</subject><subject>RADIOISOTOPES</subject><subject>RARE EARTH ISOTOPES</subject><subject>RARE EARTH NUCLEI</subject><subject>SPECTRA</subject><subject>STABLE ISOTOPES</subject><subject>VIBRATIONAL STATES</subject><subject>YRAST STATES</subject><issn>0556-2813</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>1979</creationdate><recordtype>article</recordtype><recordid>eNo1kEFLAzEQRnNQsFbPXoP33WaSTTZ7lFK1UFBEzyGdTdyV7m5JYqH_3tjqMDCXx_B9j5A7YCUAE4vX7hjf3GFZclaKml-QGZNSFVyDuCLXMX6xPEKoGVmvvHeY6OTp-D1sXaA4jdGFg039NNK8Xf_Z0bjvRxqTTS5SO7aZxZ2zgbbOT2E4sTfk0ttddLd_d04-Hlfvy-di8_K0Xj5sCuRKp0JWwkvuKwlCiy1KqcFZwLbmimsJKBsEpRvtveaoK1ZLXfvKNwy0cBa1mJP7898ppt5E7JPDLocecw2jOEAjZYYWZwjDFGNw3uxDP9hwNMDMryLzr8hwZrIi8QMrJVy7</recordid><startdate>19790701</startdate><enddate>19790701</enddate><creator>Gunye, M. R.</creator><creator>Warke, C. S.</creator><scope>AAYXX</scope><scope>CITATION</scope><scope>OTOTI</scope></search><sort><creationdate>19790701</creationdate><title>Effect of number conservation on high spin states and nuclear deformation</title><author>Gunye, M. R. ; Warke, C. S.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c268t-543f52f451383bc5581ea1cd7262851c59c16898ff82c8407587f4f90183eac83</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>1979</creationdate><topic>651813 - Nuclear Properties & Reactions, A=150-189, Theoretical- Energy Levels & Transitions- (-1987)</topic><topic>BETA DECAY RADIOISOTOPES</topic><topic>BETA-PLUS DECAY RADIOISOTOPES</topic><topic>DAYS LIVING RADIOISOTOPES</topic><topic>DEFORMATION</topic><topic>E2-TRANSITIONS</topic><topic>ELECTRON CAPTURE RADIOISOTOPES</topic><topic>ENERGY LEVELS</topic><topic>ENERGY SPECTRA</topic><topic>ENERGY-LEVEL TRANSITIONS</topic><topic>ERBIUM 158</topic><topic>ERBIUM 160</topic><topic>ERBIUM 162</topic><topic>ERBIUM ISOTOPES</topic><topic>EVEN-EVEN NUCLEI</topic><topic>EXCITED STATES</topic><topic>HAMILTONIANS</topic><topic>HARTREE-FOCK METHOD</topic><topic>HIGH SPIN STATES</topic><topic>HOURS LIVING RADIOISOTOPES</topic><topic>INTERMEDIATE MASS NUCLEI</topic><topic>ISOTOPES</topic><topic>MANY-BODY PROBLEM</topic><topic>MATHEMATICAL OPERATORS</topic><topic>MULTIPOLE TRANSITIONS</topic><topic>NUCLEAR DEFORMATION</topic><topic>NUCLEAR PHYSICS AND RADIATION PHYSICS</topic><topic>NUCLEI</topic><topic>QUADRUPOLE MOMENTS</topic><topic>QUANTUM OPERATORS</topic><topic>RADIOISOTOPES</topic><topic>RARE EARTH ISOTOPES</topic><topic>RARE EARTH NUCLEI</topic><topic>SPECTRA</topic><topic>STABLE ISOTOPES</topic><topic>VIBRATIONAL STATES</topic><topic>YRAST STATES</topic><toplevel>online_resources</toplevel><creatorcontrib>Gunye, M. R.</creatorcontrib><creatorcontrib>Warke, C. S.</creatorcontrib><creatorcontrib>Bhabha Atomic Research Centre, Trombay, Bombay-85, India</creatorcontrib><collection>CrossRef</collection><collection>OSTI.GOV</collection><jtitle>Phys. Rev., C; (United States)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Gunye, M. R.</au><au>Warke, C. S.</au><aucorp>Bhabha Atomic Research Centre, Trombay, Bombay-85, India</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Effect of number conservation on high spin states and nuclear deformation</atitle><jtitle>Phys. Rev., C; (United States)</jtitle><date>1979-07-01</date><risdate>1979</risdate><volume>20</volume><issue>1</issue><spage>372</spage><epage>380</epage><pages>372-380</pages><issn>0556-2813</issn><abstract>The high spin yrast states up to J = 20/sup +/ in /sup 158,160,162/Er are studied in the framework of microscopic variational approach by employing the Hamiltonian with quadrupole plus pairing interactions. The effect of number conservation on deformation, calculated energy spectra and B (E2) values is investigated. It is observed that the results are quite sensitive to the number conservation. The results of the calculations are in better agreement with the corresponding experimental data as compared to those obtained without number conservation.</abstract><cop>United States</cop><doi>10.1103/PhysRevC.20.372</doi><tpages>9</tpages></addata></record> |
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subjects | 651813 - Nuclear Properties & Reactions, A=150-189, Theoretical- Energy Levels & Transitions- (-1987) BETA DECAY RADIOISOTOPES BETA-PLUS DECAY RADIOISOTOPES DAYS LIVING RADIOISOTOPES DEFORMATION E2-TRANSITIONS ELECTRON CAPTURE RADIOISOTOPES ENERGY LEVELS ENERGY SPECTRA ENERGY-LEVEL TRANSITIONS ERBIUM 158 ERBIUM 160 ERBIUM 162 ERBIUM ISOTOPES EVEN-EVEN NUCLEI EXCITED STATES HAMILTONIANS HARTREE-FOCK METHOD HIGH SPIN STATES HOURS LIVING RADIOISOTOPES INTERMEDIATE MASS NUCLEI ISOTOPES MANY-BODY PROBLEM MATHEMATICAL OPERATORS MULTIPOLE TRANSITIONS NUCLEAR DEFORMATION NUCLEAR PHYSICS AND RADIATION PHYSICS NUCLEI QUADRUPOLE MOMENTS QUANTUM OPERATORS RADIOISOTOPES RARE EARTH ISOTOPES RARE EARTH NUCLEI SPECTRA STABLE ISOTOPES VIBRATIONAL STATES YRAST STATES |
title | Effect of number conservation on high spin states and nuclear deformation |
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