Journalartikel
Autorenliste: Minkov, N.; Drenska, S.; Strecker, M.; Scheid, W.; Lenske, H.
Jahr der Veröffentlichung: 2012
Zeitschrift: Physical Review C
Bandnummer: 85
Heftnummer: 3
ISSN: 0556-2813
eISSN: 1089-490X
Open Access Status: Green
DOI Link: https://doi.org/10.1103/PhysRevC.85.034306
Verlag: American Physical Society
Abstract:
A model assuming coherent quadrupole-octupole vibrations and rotations is applied to describe non-yrast energy sequences with alternating parity in several even-even nuclei from different regions, namely, Sm-152,Sm-154, Gd-154,Gd-156,Gd-158, U-236, and Mo-100. Within the model scheme, the yrast alternating-parity band is composed by the members of the ground-state band and the lowest negative-parity levels with odd angular momenta. The non-yrast alternating-parity sequences unite levels of beta bands with higher negative-parity levels. The model description reproduces the structure of the considered alternating-parity spectra together with the observed B(E1), B(E2), and B(E3) transition probabilities within and between the different level sequences. B(E1) and B(E3) reduced probabilities for transitions connecting states with opposite parity in the non-yrast alternating-parity bands are predicted. The implemented study outlines the limits of the considered band-coupling scheme and provides estimations about the collective energy potential, which governs the quadrupole-octupole properties of the considered nuclei.
Zitierstile
Harvard-Zitierstil: Minkov, N., Drenska, S., Strecker, M., Scheid, W. and Lenske, H. (2012) Non-yrast nuclear spectra in a model of coherent quadrupole-octupole motion, Physical Review C, 85(3), Article 034306. https://doi.org/10.1103/PhysRevC.85.034306
APA-Zitierstil: Minkov, N., Drenska, S., Strecker, M., Scheid, W., & Lenske, H. (2012). Non-yrast nuclear spectra in a model of coherent quadrupole-octupole motion. Physical Review C. 85(3), Article 034306. https://doi.org/10.1103/PhysRevC.85.034306
Schlagwörter
ANGULAR-MOMENTUM DEPENDENCE; BANDS; COLLECTIVE STATES; DROPLET-MODEL; EVEN-EVEN; ODD