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In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS

A number of radiogenically produced dysprosium isotopes have been studied by in-source laser spectroscopy at ISOLDE using the Resonance Ionization Laser Ion Source (RILIS). Isotope shifts were measured relative to $^{152}$Dy in the 4 f$^{ 10}$6s$^{2}$ $^5$I$_8$ (gs) $\rightarrow$ 4 f$^{ 10}$6s6p (8,...

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Autores principales: Chrysalidis, Katerina, Barzakh, Anatoly, Andreev, Andreyev, Ballof, Jochen, Cubiss, James, Fedorov, Dmitry, Fedosseev, Valentine, Fraile, Luis, Harding, Robert Dale, Marsh, Bruce
Lenguaje:eng
Publicado: 2020
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2019.04.021
http://cds.cern.ch/record/2672814
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author Chrysalidis, Katerina
Barzakh, Anatoly
Andreev, Andreyev
Ballof, Jochen
Cubiss, James
Fedorov, Dmitry
Fedosseev, Valentine
Fraile, Luis
Harding, Robert Dale
Marsh, Bruce
author_facet Chrysalidis, Katerina
Barzakh, Anatoly
Andreev, Andreyev
Ballof, Jochen
Cubiss, James
Fedorov, Dmitry
Fedosseev, Valentine
Fraile, Luis
Harding, Robert Dale
Marsh, Bruce
author_sort Chrysalidis, Katerina
collection CERN
description A number of radiogenically produced dysprosium isotopes have been studied by in-source laser spectroscopy at ISOLDE using the Resonance Ionization Laser Ion Source (RILIS). Isotope shifts were measured relative to $^{152}$Dy in the 4 f$^{ 10}$6s$^{2}$ $^5$I$_8$ (gs) $\rightarrow$ 4 f$^{ 10}$6s6p (8,1)$^8_o$ (418.8 nm$_{vac}$) resonance transition. The electronic factor, F, and mass shift factor, M, were extracted and used for determining the changes in mean-squared charge radii for $^{145m}$Dy and $^{147m}$Dy for the first time.
id cern-2672814
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-26728142022-01-14T14:54:55Zdoi:10.1016/j.nimb.2019.04.021http://cds.cern.ch/record/2672814engChrysalidis, KaterinaBarzakh, AnatolyAndreev, AndreyevBallof, JochenCubiss, JamesFedorov, DmitryFedosseev, ValentineFraile, LuisHarding, Robert DaleMarsh, BruceIn-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILISA number of radiogenically produced dysprosium isotopes have been studied by in-source laser spectroscopy at ISOLDE using the Resonance Ionization Laser Ion Source (RILIS). Isotope shifts were measured relative to $^{152}$Dy in the 4 f$^{ 10}$6s$^{2}$ $^5$I$_8$ (gs) $\rightarrow$ 4 f$^{ 10}$6s6p (8,1)$^8_o$ (418.8 nm$_{vac}$) resonance transition. The electronic factor, F, and mass shift factor, M, were extracted and used for determining the changes in mean-squared charge radii for $^{145m}$Dy and $^{147m}$Dy for the first time.A number of radiogenically produced dysprosium isotopes have been studied by in-source laser spectroscopy at ISOLDE using the Resonance Ionization Laser Ion Source (RILIS). Isotope shifts were measured relative to $^{152}$Dy in the 4$f$$^{10}$6$s$$^{2}$ $^{5}$ I$_{8}$ (gs)→ 4$f$$^{10}$6$s$6$p$(8,1)$_{8}^{0}$ (418.8nm$_{vac}$) resonance transition. The electronic factor, $F$ , and mass shift factor, $M$ , were extracted and used for determining the changes in mean-squared charge radii for $^{145m}$Dy and $^{147m}$ Dy for the first time.CERN-ISOLDE-CONF-2019-002oai:cds.cern.ch:26728142020
spellingShingle Chrysalidis, Katerina
Barzakh, Anatoly
Andreev, Andreyev
Ballof, Jochen
Cubiss, James
Fedorov, Dmitry
Fedosseev, Valentine
Fraile, Luis
Harding, Robert Dale
Marsh, Bruce
In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS
title In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS
title_full In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS
title_fullStr In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS
title_full_unstemmed In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS
title_short In-source laser spectroscopy of dysprosium isotopes at the ISOLDE-RILIS
title_sort in-source laser spectroscopy of dysprosium isotopes at the isolde-rilis
url https://dx.doi.org/10.1016/j.nimb.2019.04.021
http://cds.cern.ch/record/2672814
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