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Spins and magnetic moments of 58;60;62;64Mn ground states and isomers

The odd-odd 54;56;58;60;62;64Mn isotopes (Z = 25) were studied using bunched-beam collinear laser spectroscopy at ISOLDE, CERN. From the measured hyperfine spectra the spins and magnetic moments of Mn isotopes up to N = 39 were extracted. The previous tentative ground state spin assignments of 58;60...

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Autores principales: Heylen, H., Babcock, C., Billowes, J., Bissell, M.L., Blaum, K., Campbell, P., Cheal, B., Garcia Ruiz, R.F., Geppert, Ch., Gins, W., Kowalska, M., Kreim, K., Lenzi, S.M., Moore, I.D., Neugart, R., Neyens, G., Nörtershäuser, W., Papuga, J., Yordanov, D.T.
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.92.044311
http://cds.cern.ch/record/2047280
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author Heylen, H.
Babcock, C.
Billowes, J.
Bissell, M.L.
Blaum, K.
Campbell, P.
Cheal, B.
Garcia Ruiz, R.F.
Geppert, Ch.
Gins, W.
Kowalska, M.
Kreim, K.
Lenzi, S.M.
Moore, I.D.
Neugart, R.
Neyens, G.
Nörtershäuser, W.
Papuga, J.
Yordanov, D.T.
author_facet Heylen, H.
Babcock, C.
Billowes, J.
Bissell, M.L.
Blaum, K.
Campbell, P.
Cheal, B.
Garcia Ruiz, R.F.
Geppert, Ch.
Gins, W.
Kowalska, M.
Kreim, K.
Lenzi, S.M.
Moore, I.D.
Neugart, R.
Neyens, G.
Nörtershäuser, W.
Papuga, J.
Yordanov, D.T.
author_sort Heylen, H.
collection CERN
description The odd-odd 54;56;58;60;62;64Mn isotopes (Z = 25) were studied using bunched-beam collinear laser spectroscopy at ISOLDE, CERN. From the measured hyperfine spectra the spins and magnetic moments of Mn isotopes up to N = 39 were extracted. The previous tentative ground state spin assignments of 58;60;62;64Mn are now firmly determined to be I = 1 along with an I = 4 assignment for the isomeric states in 58;60;62Mn. The I = 1 magnetic moments show a decreasing trend with increasing neutron number while the I = 4 moments remain quite constant between N = 33 and N = 37. The results are compared to large-scale shell-model calculations using the GXPF1A and LNPS effective interactions. The excellent agreement of the ground state moments with the predictions from the LNPS calculations illustrates the need for an increasing amount of proton excitations across Z = 28 and neutron excitations across N = 40 in the ground state wave functions from N = 37 onwards.
id cern-2047280
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20472802022-08-10T10:06:17Zdoi:10.1103/PhysRevC.92.044311http://cds.cern.ch/record/2047280engHeylen, H.Babcock, C.Billowes, J.Bissell, M.L.Blaum, K.Campbell, P.Cheal, B.Garcia Ruiz, R.F.Geppert, Ch.Gins, W.Kowalska, M.Kreim, K.Lenzi, S.M.Moore, I.D.Neugart, R.Neyens, G.Nörtershäuser, W.Papuga, J.Yordanov, D.T.Spins and magnetic moments of 58;60;62;64Mn ground states and isomersNuclear Physics - ExperimentThe odd-odd 54;56;58;60;62;64Mn isotopes (Z = 25) were studied using bunched-beam collinear laser spectroscopy at ISOLDE, CERN. From the measured hyperfine spectra the spins and magnetic moments of Mn isotopes up to N = 39 were extracted. The previous tentative ground state spin assignments of 58;60;62;64Mn are now firmly determined to be I = 1 along with an I = 4 assignment for the isomeric states in 58;60;62Mn. The I = 1 magnetic moments show a decreasing trend with increasing neutron number while the I = 4 moments remain quite constant between N = 33 and N = 37. The results are compared to large-scale shell-model calculations using the GXPF1A and LNPS effective interactions. The excellent agreement of the ground state moments with the predictions from the LNPS calculations illustrates the need for an increasing amount of proton excitations across Z = 28 and neutron excitations across N = 40 in the ground state wave functions from N = 37 onwards.The odd-odd Mn54,56,58,60,62,64 isotopes (Z=25) were studied using bunched-beam collinear laser spectroscopy at ISOLDE, CERN. From the measured hyperfine spectra the spins and magnetic moments of Mn isotopes up to N=39 were extracted. The previous tentative ground state spin assignments of Mn58,60,62,64 are now firmly determined to be I=1 along with an I=4 assignment for the isomeric states in Mn58,60,62. The I=1 magnetic moments show a decreasing trend with increasing neutron number while the I=4 moments remain quite constant between N=33 and N=37. The results are compared to large-scale shell-model calculations using the GXPF1A and LNPS effective interactions. The excellent agreement of the ground state moments with the predictions from the LNPS calculations illustrates the need for an increasing amount of proton excitations across Z=28 and neutron excitations across N=40 in the ground state wave functions from N=37 onwards.The odd-odd 54;56;58;60;62;64Mn isotopes (Z = 25) were studied using bunched-beam collinear laser spectroscopy at ISOLDE, CERN. From the measured hyperfine spectra the spins and magnetic moments of Mn isotopes up to N = 39 were extracted. The previous tentative ground state spin assignments of 58;60;62;64Mn are now firmly detarXiv:1508.06207oai:cds.cern.ch:20472802015-08-25
spellingShingle Nuclear Physics - Experiment
Heylen, H.
Babcock, C.
Billowes, J.
Bissell, M.L.
Blaum, K.
Campbell, P.
Cheal, B.
Garcia Ruiz, R.F.
Geppert, Ch.
Gins, W.
Kowalska, M.
Kreim, K.
Lenzi, S.M.
Moore, I.D.
Neugart, R.
Neyens, G.
Nörtershäuser, W.
Papuga, J.
Yordanov, D.T.
Spins and magnetic moments of 58;60;62;64Mn ground states and isomers
title Spins and magnetic moments of 58;60;62;64Mn ground states and isomers
title_full Spins and magnetic moments of 58;60;62;64Mn ground states and isomers
title_fullStr Spins and magnetic moments of 58;60;62;64Mn ground states and isomers
title_full_unstemmed Spins and magnetic moments of 58;60;62;64Mn ground states and isomers
title_short Spins and magnetic moments of 58;60;62;64Mn ground states and isomers
title_sort spins and magnetic moments of 58;60;62;64mn ground states and isomers
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevC.92.044311
http://cds.cern.ch/record/2047280
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