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Restoring the valence-shell stabilization in $^{140}$Nd
A projectile Coulomb-excitation experiment was performed at the radioactive-ion beam facility HIE-ISOLDE at CERN to obtain $E2$ and $M1$ transition matrix elements of $^{140}$Nd using the multistep Coulomb-excitation code GOSIA. The absolute $M1$ strengths, $\textrm{B}(M1;2^+_2→2^+_1)=0.033(8)μ^2_N,...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2020
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1103/PhysRevC.102.041304 http://cds.cern.ch/record/2743931 |
_version_ | 1780968590737932288 |
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author | Kern, R Zidarova, R Pietralla, N Rainovski, G Stegmann, R Blazhev, A Boukhari, A Cederkäll, J Cubiss, J G Djongolov, M Fransen, C Gaffney, L P Gladnishki, K Giannopoulos, E Hess, H Jolie, J Karayonchev, V Kaya, L Keatings, J M Kocheva, D Kröll, Th Möller, O O'Neill, G G Pakarinen, J Reiter, P Rosiak, D Scheck, M Snall, J Söderström, P A Spagnoletti, P Stoyanova, M Thiel, S Vogt, A Warr, N Welker, A Werner, V Wiederhold, J De Witte, H |
author_facet | Kern, R Zidarova, R Pietralla, N Rainovski, G Stegmann, R Blazhev, A Boukhari, A Cederkäll, J Cubiss, J G Djongolov, M Fransen, C Gaffney, L P Gladnishki, K Giannopoulos, E Hess, H Jolie, J Karayonchev, V Kaya, L Keatings, J M Kocheva, D Kröll, Th Möller, O O'Neill, G G Pakarinen, J Reiter, P Rosiak, D Scheck, M Snall, J Söderström, P A Spagnoletti, P Stoyanova, M Thiel, S Vogt, A Warr, N Welker, A Werner, V Wiederhold, J De Witte, H |
author_sort | Kern, R |
collection | CERN |
description | A projectile Coulomb-excitation experiment was performed at the radioactive-ion beam facility HIE-ISOLDE at CERN to obtain $E2$ and $M1$ transition matrix elements of $^{140}$Nd using the multistep Coulomb-excitation code GOSIA. The absolute $M1$ strengths, $\textrm{B}(M1;2^+_2→2^+_1)=0.033(8)μ^2_N,\textrm{B}(M1;2^+_3→2^+_1)=0.26^{+0.11}_{−0.10}μ^2_N$, and $\textrm{B}(M1;2^+_4→2^+_1)<0.04μ^2_{\textrm{N}}$, identify the $2^+_3$ state as the main fragment of the one-quadrupole-phonon proton-neutron mixed-symmetry state of $^{140}$Nd. The degree of F-spin mixing in $^{140}$Nd was quantified with the determination of the mixing matrix element $V_{\textrm{F−mix}}<7^{+13}_{−7}$keV. |
id | oai-inspirehep.net-1823929 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2020 |
record_format | invenio |
spelling | oai-inspirehep.net-18239292020-11-10T19:24:12Zdoi:10.1103/PhysRevC.102.041304http://cds.cern.ch/record/2743931engKern, RZidarova, RPietralla, NRainovski, GStegmann, RBlazhev, ABoukhari, ACederkäll, JCubiss, J GDjongolov, MFransen, CGaffney, L PGladnishki, KGiannopoulos, EHess, HJolie, JKarayonchev, VKaya, LKeatings, J MKocheva, DKröll, ThMöller, OO'Neill, G GPakarinen, JReiter, PRosiak, DScheck, MSnall, JSöderström, P ASpagnoletti, PStoyanova, MThiel, SVogt, AWarr, NWelker, AWerner, VWiederhold, JDe Witte, HRestoring the valence-shell stabilization in $^{140}$NdNuclear Physics - ExperimentA projectile Coulomb-excitation experiment was performed at the radioactive-ion beam facility HIE-ISOLDE at CERN to obtain $E2$ and $M1$ transition matrix elements of $^{140}$Nd using the multistep Coulomb-excitation code GOSIA. The absolute $M1$ strengths, $\textrm{B}(M1;2^+_2→2^+_1)=0.033(8)μ^2_N,\textrm{B}(M1;2^+_3→2^+_1)=0.26^{+0.11}_{−0.10}μ^2_N$, and $\textrm{B}(M1;2^+_4→2^+_1)<0.04μ^2_{\textrm{N}}$, identify the $2^+_3$ state as the main fragment of the one-quadrupole-phonon proton-neutron mixed-symmetry state of $^{140}$Nd. The degree of F-spin mixing in $^{140}$Nd was quantified with the determination of the mixing matrix element $V_{\textrm{F−mix}}<7^{+13}_{−7}$keV.oai:inspirehep.net:18239292020 |
spellingShingle | Nuclear Physics - Experiment Kern, R Zidarova, R Pietralla, N Rainovski, G Stegmann, R Blazhev, A Boukhari, A Cederkäll, J Cubiss, J G Djongolov, M Fransen, C Gaffney, L P Gladnishki, K Giannopoulos, E Hess, H Jolie, J Karayonchev, V Kaya, L Keatings, J M Kocheva, D Kröll, Th Möller, O O'Neill, G G Pakarinen, J Reiter, P Rosiak, D Scheck, M Snall, J Söderström, P A Spagnoletti, P Stoyanova, M Thiel, S Vogt, A Warr, N Welker, A Werner, V Wiederhold, J De Witte, H Restoring the valence-shell stabilization in $^{140}$Nd |
title | Restoring the valence-shell stabilization in $^{140}$Nd |
title_full | Restoring the valence-shell stabilization in $^{140}$Nd |
title_fullStr | Restoring the valence-shell stabilization in $^{140}$Nd |
title_full_unstemmed | Restoring the valence-shell stabilization in $^{140}$Nd |
title_short | Restoring the valence-shell stabilization in $^{140}$Nd |
title_sort | restoring the valence-shell stabilization in $^{140}$nd |
topic | Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1103/PhysRevC.102.041304 http://cds.cern.ch/record/2743931 |
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