arXiv:2501.02848·v1·Nuclear Experiment
Direct observation of and decay from a high-spin long-lived isomer in Ta
J. L. Chen · H. Watanabe · P. M. Walker · Y. Hirayama · Y. X. Watanabe · M. Mukai · C. F. Jiao · M. Ahmed · M. Brunet · T. Hashimoto · S. Ishizawa · F. G. Kondev
Abstract
Ta (, ) is located in the neutron-rich region where a prolate-to-oblate shape transition via triaxial softness is predicted to take place. A preceding work on the isomer and a rotational band to which the isomer decays carried out by the same collaboration revealed that axial symmetry is slightly violated in this nucleus. This paper focuses on a higher-lying isomer, which was previously identified at 2933(14) keV by mass measurements with the Experimental Storage Ring at GSI. The isomer of interest has been populated by a multi-nucleon transfer reaction with a Xe primary beam incident on a natural tungsten target, using the KEK Isotope Separation System at RIKEN. New experimental findings obtained in the present paper include the internal and external -decay branches from the high-spin isomer and a revised half-life of 136(24) s. The evaluated hindrances for -forbidden transitions put constraints on the spin-parity assignment, which can be interpreted as being ascribed to a prolate shape with a five-quasiparticle configuration by model calculations.
Comments: 9 pages, 5 figures