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Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$
This paper reports measurements using the technique of On Line Nuclear Orientation (OLNO) which reexamine the gamma decay of isomeric $^{\rm 180}$Hf$^{\rm m}$ and specifically the 501 keV 8$^{\rm -}$ -- 6$^{\rm +}$ transition. The irregular admixture of E2 to M2/E3 multipolarity in this transition,...
Autores principales: | , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2007
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1103/PhysRevC.76.025502 http://cds.cern.ch/record/1045748 |
_version_ | 1780912729242992640 |
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author | Stone, J.R. Goldring, G. Stone, N.J. Severijns, N. Hass, M. Zakoucky, D. Giles, T. Koster, U. Kraev, I.S. Lakshmi, S. Lindroos, M. Wauters, F. |
author_facet | Stone, J.R. Goldring, G. Stone, N.J. Severijns, N. Hass, M. Zakoucky, D. Giles, T. Koster, U. Kraev, I.S. Lakshmi, S. Lindroos, M. Wauters, F. |
author_sort | Stone, J.R. |
collection | CERN |
description | This paper reports measurements using the technique of On Line Nuclear Orientation (OLNO) which reexamine the gamma decay of isomeric $^{\rm 180}$Hf$^{\rm m}$ and specifically the 501 keV 8$^{\rm -}$ -- 6$^{\rm +}$ transition. The irregular admixture of E2 to M2/E3 multipolarity in this transition, deduced from the forward-backward asymmetry of its angular distribution, has for decades stood as the prime evidence for parity mixing in nuclear states. The experiment, based on ion implantation of the newly developed mass-separated $^{\rm 180}$Hf$^{\rm m}$ beam at ISOLDE, CERN into an iron foil maintained at millikelvin temperatures, produces higher degrees of polarization than were achieved in previous studies of this system. The value found for the E2/M2 mixing ratio, $\epsilon$ = -0.0324(16)(17), is in close agreement with the previous published average value $\epsilon$ = - 0.030(2), in full confirmation of the presence of the irregular E2 admixture in the 501 keV transition. The temperature dependence of the forward-backward asymmetry has been measured over a more extended range of nuclear polarization than previously possible, giving further evidence for parity mixing of the 8$^{\rm -}$ and 8$^{\rm +}$ levels and the deduced E2/M2 mixing ratio. |
id | cern-1045748 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2007 |
record_format | invenio |
spelling | cern-10457482023-03-14T16:44:36Zdoi:10.1103/PhysRevC.76.025502http://cds.cern.ch/record/1045748engStone, J.R.Goldring, G.Stone, N.J.Severijns, N.Hass, M.Zakoucky, D.Giles, T.Koster, U.Kraev, I.S.Lakshmi, S.Lindroos, M.Wauters, F.Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$Nuclear Physics - ExperimentThis paper reports measurements using the technique of On Line Nuclear Orientation (OLNO) which reexamine the gamma decay of isomeric $^{\rm 180}$Hf$^{\rm m}$ and specifically the 501 keV 8$^{\rm -}$ -- 6$^{\rm +}$ transition. The irregular admixture of E2 to M2/E3 multipolarity in this transition, deduced from the forward-backward asymmetry of its angular distribution, has for decades stood as the prime evidence for parity mixing in nuclear states. The experiment, based on ion implantation of the newly developed mass-separated $^{\rm 180}$Hf$^{\rm m}$ beam at ISOLDE, CERN into an iron foil maintained at millikelvin temperatures, produces higher degrees of polarization than were achieved in previous studies of this system. The value found for the E2/M2 mixing ratio, $\epsilon$ = -0.0324(16)(17), is in close agreement with the previous published average value $\epsilon$ = - 0.030(2), in full confirmation of the presence of the irregular E2 admixture in the 501 keV transition. The temperature dependence of the forward-backward asymmetry has been measured over a more extended range of nuclear polarization than previously possible, giving further evidence for parity mixing of the 8$^{\rm -}$ and 8$^{\rm +}$ levels and the deduced E2/M2 mixing ratio.This paper reports measurements using the technique of On Line Nuclear Orientation (OLNO) which reexamine the gamma decay of isomeric $^{\rm 180}$Hf$^{\rm m}$ and specifically the 501 keV 8$^{\rm -}$ -- 6$^{\rm +}$ transition. The irregular admixture of E2 to M2/E3 multipolarity in this transition, deduced from the forward-backward asymmetry of its angular distribution, has for decades stood as the prime evidence for parity mixing in nuclear states. The experiment, based on ion implantation of the newly developed mass-separated $^{\rm 180}$Hf$^{\rm m}$ beam at ISOLDE, CERN into an iron foil maintained at millikelvin temperatures, produces higher degrees of polarization than were achieved in previous studies of this system. The value found for the E2/M2 mixing ratio, $\epsilon$ = -0.0324(16)(17), is in close agreement with the previous published average value $\epsilon$ = - 0.030(2), in full confirmation of the presence of the irregular E2 admixture in the 501 keV transition. The temperature dependence of the forward-backward asymmetry has been measured over a more extended range of nuclear polarization than previously possible, giving further evidence for parity mixing of the 8$^{\rm -}$ and 8$^{\rm +}$ levels and the deduced E2/M2 mixing ratio.arXiv:0707.1061oai:cds.cern.ch:10457482007-07-10 |
spellingShingle | Nuclear Physics - Experiment Stone, J.R. Goldring, G. Stone, N.J. Severijns, N. Hass, M. Zakoucky, D. Giles, T. Koster, U. Kraev, I.S. Lakshmi, S. Lindroos, M. Wauters, F. Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$ |
title | Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$ |
title_full | Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$ |
title_fullStr | Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$ |
title_full_unstemmed | Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$ |
title_short | Confirmation of parity violation in the $\gamma$ decay of $^{180}$Hf$^{m}$ |
title_sort | confirmation of parity violation in the $\gamma$ decay of $^{180}$hf$^{m}$ |
topic | Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1103/PhysRevC.76.025502 http://cds.cern.ch/record/1045748 |
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