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author Xu, Z.Y.
Madurga, M.
Grzywacz, R.
King, T.T.
Algora, A.
Andreyev, A.N.
Benito, J.
Berry, T.
Borge, M.J.G.
Costache, C.
De Witte, H.
Fijalkowska, A.
Fraile, L.M.
Fynbo, H.O.U.
Gottardo, A.
Halverson, C.
Harkness-Brennan, L.J.
Heideman, J.
Huyse, M.
Illana, A.
Janiak, Ł.
Judson, D.S.
Korgul, A.
Kurtukian-Nieto, T.
Lazarus, I.
Lică, R.
Lozeva, R.
Marginean, N.
Marginean, R.
Mazzocchi, C.
Mihai, C.
Mihai, R.E.
Morales, A.I.
Page, R.D.
Pakarinen, J.
Piersa-Siłkowska, M.
Podolyák, Zs.
Sarriguren, P.
Singh, M.
Sotty, Ch.
Stepaniuk, M.
Tengblad, O.
Turturica, A.
Van Duppen, P.
Vedia, V.
Viñals, S.
Warr, N.
Yokoyama, R.
Yuan, C.X.
author_facet Xu, Z.Y.
Madurga, M.
Grzywacz, R.
King, T.T.
Algora, A.
Andreyev, A.N.
Benito, J.
Berry, T.
Borge, M.J.G.
Costache, C.
De Witte, H.
Fijalkowska, A.
Fraile, L.M.
Fynbo, H.O.U.
Gottardo, A.
Halverson, C.
Harkness-Brennan, L.J.
Heideman, J.
Huyse, M.
Illana, A.
Janiak, Ł.
Judson, D.S.
Korgul, A.
Kurtukian-Nieto, T.
Lazarus, I.
Lică, R.
Lozeva, R.
Marginean, N.
Marginean, R.
Mazzocchi, C.
Mihai, C.
Mihai, R.E.
Morales, A.I.
Page, R.D.
Pakarinen, J.
Piersa-Siłkowska, M.
Podolyák, Zs.
Sarriguren, P.
Singh, M.
Sotty, Ch.
Stepaniuk, M.
Tengblad, O.
Turturica, A.
Van Duppen, P.
Vedia, V.
Viñals, S.
Warr, N.
Yokoyama, R.
Yuan, C.X.
author_sort Xu, Z.Y.
collection CERN
description The decay properties of <math><mmultiscripts><mi>In</mi><mprescripts/><none/><mn>133</mn></mmultiscripts></math> were studied in detail at the ISOLDE Decay Station. The implementation of the Resonance Ionization Laser Ion Source allowed separate measurements of its <math><mrow><mn>9</mn><mo>/</mo><msup><mn>2</mn><mo>+</mo></msup></mrow></math> ground state (<math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>g</mi></mrow></mmultiscripts></math>) and <math><mrow><mn>1</mn><mo>/</mo><msup><mn>2</mn><mo>−</mo></msup></mrow></math> isomer (<math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>m</mi></mrow></mmultiscripts></math>). With the use of <math><mi>β</mi></math>-delayed neutron and <math><mi>γ</mi></math> spectroscopy, the decay strengths above the neutron separation energy were quantified in this neutron-rich nucleus for the first time. The allowed Gamow-Teller transition <math><mrow><mn>9</mn><mo>/</mo><msup><mn>2</mn><mo>+</mo></msup><mo>→</mo><mn>7</mn><mo>/</mo><msup><mn>2</mn><mo>+</mo></msup></mrow></math> was located at 5.93 MeV in the <math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>g</mi></mrow></mmultiscripts></math> decay with a <math><mrow><mi>log</mi><mi>f</mi><mi>t</mi><mo>=</mo><mn>4.7</mn><mo>(</mo><mn>1</mn><mo>)</mo></mrow></math>. In addition, several neutron-unbound states were populated at lower excitation energies by the first-forbidden decays of <math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>g</mi><mo>,</mo><mi>m</mi></mrow></mmultiscripts></math>. We assigned spins and parities to those neutron-unbound states based on the <math><mi>β</mi></math>-decay selection rules, the <math><mrow><mi>log</mi><mi>f</mi><mi>t</mi></mrow></math> values, and systematics.
id cern-2855728
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28557282023-10-18T09:20:30Zdoi:10.1103/PhysRevC.108.014314http://cds.cern.ch/record/2855728engXu, Z.Y.Madurga, M.Grzywacz, R.King, T.T.Algora, A.Andreyev, A.N.Benito, J.Berry, T.Borge, M.J.G.Costache, C.De Witte, H.Fijalkowska, A.Fraile, L.M.Fynbo, H.O.U.Gottardo, A.Halverson, C.Harkness-Brennan, L.J.Heideman, J.Huyse, M.Illana, A.Janiak, Ł.Judson, D.S.Korgul, A.Kurtukian-Nieto, T.Lazarus, I.Lică, R.Lozeva, R.Marginean, N.Marginean, R.Mazzocchi, C.Mihai, C.Mihai, R.E.Morales, A.I.Page, R.D.Pakarinen, J.Piersa-Siłkowska, M.Podolyák, Zs.Sarriguren, P.Singh, M.Sotty, Ch.Stepaniuk, M.Tengblad, O.Turturica, A.Van Duppen, P.Vedia, V.Viñals, S.Warr, N.Yokoyama, R.Yuan, C.X.$\beta$-delayed neutron spectroscopy of $^{133}$Innucl-exNuclear Physics - ExperimentThe decay properties of <math><mmultiscripts><mi>In</mi><mprescripts/><none/><mn>133</mn></mmultiscripts></math> were studied in detail at the ISOLDE Decay Station. The implementation of the Resonance Ionization Laser Ion Source allowed separate measurements of its <math><mrow><mn>9</mn><mo>/</mo><msup><mn>2</mn><mo>+</mo></msup></mrow></math> ground state (<math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>g</mi></mrow></mmultiscripts></math>) and <math><mrow><mn>1</mn><mo>/</mo><msup><mn>2</mn><mo>−</mo></msup></mrow></math> isomer (<math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>m</mi></mrow></mmultiscripts></math>). With the use of <math><mi>β</mi></math>-delayed neutron and <math><mi>γ</mi></math> spectroscopy, the decay strengths above the neutron separation energy were quantified in this neutron-rich nucleus for the first time. The allowed Gamow-Teller transition <math><mrow><mn>9</mn><mo>/</mo><msup><mn>2</mn><mo>+</mo></msup><mo>→</mo><mn>7</mn><mo>/</mo><msup><mn>2</mn><mo>+</mo></msup></mrow></math> was located at 5.93 MeV in the <math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>g</mi></mrow></mmultiscripts></math> decay with a <math><mrow><mi>log</mi><mi>f</mi><mi>t</mi><mo>=</mo><mn>4.7</mn><mo>(</mo><mn>1</mn><mo>)</mo></mrow></math>. In addition, several neutron-unbound states were populated at lower excitation energies by the first-forbidden decays of <math><mmultiscripts><mi>In</mi><mprescripts/><none/><mrow><mn>133</mn><mi>g</mi><mo>,</mo><mi>m</mi></mrow></mmultiscripts></math>. We assigned spins and parities to those neutron-unbound states based on the <math><mi>β</mi></math>-decay selection rules, the <math><mrow><mi>log</mi><mi>f</mi><mi>t</mi></mrow></math> values, and systematics.The decay properties of $^{133}$In were studied in detail at the ISOLDE Decay Station (IDS). The implementation of the Resonance Ionization Laser Ion Source (RILIS) allowed separate measurements of its $9/2^+$ ground state ($^{133g}$In) and $1/2^-$ isomer ($^{133m}$In). With the use of $\beta$-delayed neutron and $\gamma$ spectroscopy, the decay strengths above the neutron separation energy were quantified in this neutron-rich nucleus for the first time. The allowed Gamow-Teller transition $9/2^+\rightarrow7/2^+$ was located at 5.92 MeV in the $^{133g}$In decay with a logft = 4.7(1). In addition, several neutron-unbound states were populated at lower excitation energies by the First-Forbidden decays of $^{133g,m}$In. We assigned spins and parities to those neutron-unbound states based on the $\beta$-decay selection rules, the logft values, and systematics.arXiv:2303.12173oai:cds.cern.ch:28557282023-03-21
spellingShingle nucl-ex
Nuclear Physics - Experiment
Xu, Z.Y.
Madurga, M.
Grzywacz, R.
King, T.T.
Algora, A.
Andreyev, A.N.
Benito, J.
Berry, T.
Borge, M.J.G.
Costache, C.
De Witte, H.
Fijalkowska, A.
Fraile, L.M.
Fynbo, H.O.U.
Gottardo, A.
Halverson, C.
Harkness-Brennan, L.J.
Heideman, J.
Huyse, M.
Illana, A.
Janiak, Ł.
Judson, D.S.
Korgul, A.
Kurtukian-Nieto, T.
Lazarus, I.
Lică, R.
Lozeva, R.
Marginean, N.
Marginean, R.
Mazzocchi, C.
Mihai, C.
Mihai, R.E.
Morales, A.I.
Page, R.D.
Pakarinen, J.
Piersa-Siłkowska, M.
Podolyák, Zs.
Sarriguren, P.
Singh, M.
Sotty, Ch.
Stepaniuk, M.
Tengblad, O.
Turturica, A.
Van Duppen, P.
Vedia, V.
Viñals, S.
Warr, N.
Yokoyama, R.
Yuan, C.X.
$\beta$-delayed neutron spectroscopy of $^{133}$In
title $\beta$-delayed neutron spectroscopy of $^{133}$In
title_full $\beta$-delayed neutron spectroscopy of $^{133}$In
title_fullStr $\beta$-delayed neutron spectroscopy of $^{133}$In
title_full_unstemmed $\beta$-delayed neutron spectroscopy of $^{133}$In
title_short $\beta$-delayed neutron spectroscopy of $^{133}$In
title_sort $\beta$-delayed neutron spectroscopy of $^{133}$in
topic nucl-ex
Nuclear Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevC.108.014314
http://cds.cern.ch/record/2855728
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