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Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th

In-source resonance ionization spectroscopy was used to identify an efficient and selective three step excitation/ionization scheme of thorium, suitable for titanium:sapphire (Ti:sa) lasers. The measurements were carried out in preparation of laser spectroscopic investigations for an identification...

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Autores principales: Raeder, S, Moore, I D, Wendt, K, Sonnenschein, V, Trautmann, N, Rothe, S, Reponen, M, Gottwald, T
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1088/0953-4075/44/16/165005
http://cds.cern.ch/record/1353319
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author Raeder, S
Moore, I D
Wendt, K
Sonnenschein, V
Trautmann, N
Rothe, S
Reponen, M
Gottwald, T
author_facet Raeder, S
Moore, I D
Wendt, K
Sonnenschein, V
Trautmann, N
Rothe, S
Reponen, M
Gottwald, T
author_sort Raeder, S
collection CERN
description In-source resonance ionization spectroscopy was used to identify an efficient and selective three step excitation/ionization scheme of thorium, suitable for titanium:sapphire (Ti:sa) lasers. The measurements were carried out in preparation of laser spectroscopic investigations for an identification of the low-lying Th-229m isomer predicted at 7.6 +- 0.5 eV above the nuclear ground state. Using a sample of Th-232, a multitude of optical transitions leading to over 20 previously unknown intermediate states of even parity as well as numerous high-lying odd parity auto-ionizing states were identified. Level energies were determined with an accuracy of 0.06 cm-1 for intermediate and 0.15 cm-1 for auto-ionizing states. Using different excitation pathways an assignment of total angular momenta for several energy levels was possible. One particularly efficient ionization scheme of thorium, exhibiting saturation in all three optical transitions, was studied in detail. For all three levels in this scheme, the isotope shifts of the isotopes Th-228, Th-229, and Th-230 relative to Th-232 were measured. An overall efficiency including ionization, transport and detection of 0.6 was determined, which was predominantly limited by the transmission of the mass spectrometer ion optics.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13533192021-05-03T20:06:52Zdoi:10.1088/0953-4075/44/16/165005http://cds.cern.ch/record/1353319engRaeder, SMoore, I DWendt, KSonnenschein, VTrautmann, NRothe, SReponen, MGottwald, TResonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$ThOther Fields of PhysicsIn-source resonance ionization spectroscopy was used to identify an efficient and selective three step excitation/ionization scheme of thorium, suitable for titanium:sapphire (Ti:sa) lasers. The measurements were carried out in preparation of laser spectroscopic investigations for an identification of the low-lying Th-229m isomer predicted at 7.6 +- 0.5 eV above the nuclear ground state. Using a sample of Th-232, a multitude of optical transitions leading to over 20 previously unknown intermediate states of even parity as well as numerous high-lying odd parity auto-ionizing states were identified. Level energies were determined with an accuracy of 0.06 cm-1 for intermediate and 0.15 cm-1 for auto-ionizing states. Using different excitation pathways an assignment of total angular momenta for several energy levels was possible. One particularly efficient ionization scheme of thorium, exhibiting saturation in all three optical transitions, was studied in detail. For all three levels in this scheme, the isotope shifts of the isotopes Th-228, Th-229, and Th-230 relative to Th-232 were measured. An overall efficiency including ionization, transport and detection of 0.6 was determined, which was predominantly limited by the transmission of the mass spectrometer ion optics.arXiv:1105.4646oai:cds.cern.ch:13533192011-05-25
spellingShingle Other Fields of Physics
Raeder, S
Moore, I D
Wendt, K
Sonnenschein, V
Trautmann, N
Rothe, S
Reponen, M
Gottwald, T
Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th
title Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th
title_full Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th
title_fullStr Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th
title_full_unstemmed Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th
title_short Resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 eV isomer of $^{229}$Th
title_sort resonance ionization spectroscopy of thorium isotopes - towards a laser spectroscopic identification of the low-lying 7.6 ev isomer of $^{229}$th
topic Other Fields of Physics
url https://dx.doi.org/10.1088/0953-4075/44/16/165005
http://cds.cern.ch/record/1353319
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