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Nuclear structure of 82Kr and 82Se relevant for neutrinoless double-beta decay

Publication ,  Conference
Gayer, U; Werner, V; Beck, T; Finch, S; Kleemann, J; Krishichayan, ; Löher, B; Papst, O; Pietralla, N; Ries, PC; Savran, D; Weinert, M; Tornow, W
Published in: EPJ Web of Conferences
November 14, 2018

Nuclear Resonance Fluorescence (NRF) experiments on the nuclei 82Kr and 82Se were performed, that are a candidates for a mother-daughter pair for the hypothetical neutrinoless double-beta (0νββ) decay. The experiment aimed at providing high-precision data to benchmark theoretical calculations of the nuclear matrix elements involved in this exotic decay mode. We have investigated the excitation energy range from 2.3MeV to 4.2MeV, where the nuclear scissors mode is expected to be located in nuclei of this mass region. Our experiment was able to constrain decay branches of the scissors mode down to a level of a few percents, comparable to previous experiments on heavy deformed 0νββ decay candidates. Reduced transition strengths of the magnetic dipole-excited states have been determined by a method that exploits the non-resonant background in the NRF spectra. They are compared to a calculation within the nuclear shell model for 82Se, which reveals their mixed orbital and spin character, hinting at a more complex microscopic structure of low-lying 1+ states.

Duke Scholars

Published In

EPJ Web of Conferences

DOI

EISSN

2100-014X

ISSN

2101-6275

Publication Date

November 14, 2018

Volume

194

Related Subject Headings

  • 5110 Synchrotrons and accelerators
  • 5107 Particle and high energy physics
 

Citation

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Gayer, U., Werner, V., Beck, T., Finch, S., Kleemann, J., Krishichayan, ., … Tornow, W. (2018). Nuclear structure of 82Kr and 82Se relevant for neutrinoless double-beta decay. In EPJ Web of Conferences (Vol. 194). https://doi.org/10.1051/epjconf/201819402004
Gayer, U., V. Werner, T. Beck, S. Finch, J. Kleemann, J. Krishichayan, B. Löher, et al. “Nuclear structure of 82Kr and 82Se relevant for neutrinoless double-beta decay.” In EPJ Web of Conferences, Vol. 194, 2018. https://doi.org/10.1051/epjconf/201819402004.
Gayer U, Werner V, Beck T, Finch S, Kleemann J, Krishichayan, et al. Nuclear structure of 82Kr and 82Se relevant for neutrinoless double-beta decay. In: EPJ Web of Conferences. 2018.
Gayer, U., et al. “Nuclear structure of 82Kr and 82Se relevant for neutrinoless double-beta decay.” EPJ Web of Conferences, vol. 194, 2018. Scopus, doi:10.1051/epjconf/201819402004.
Gayer U, Werner V, Beck T, Finch S, Kleemann J, Krishichayan, Löher B, Papst O, Pietralla N, Ries PC, Savran D, Weinert M, Tornow W. Nuclear structure of 82Kr and 82Se relevant for neutrinoless double-beta decay. EPJ Web of Conferences. 2018.
Journal cover image

Published In

EPJ Web of Conferences

DOI

EISSN

2100-014X

ISSN

2101-6275

Publication Date

November 14, 2018

Volume

194

Related Subject Headings

  • 5110 Synchrotrons and accelerators
  • 5107 Particle and high energy physics