PaperPanorama

arXiv:2606.18165·v1·Nuclear Experiment

Observation of a dominant neutron configuration in the Si isomeric state

C. R. Hoffman · G. L. Wilson · J. Chen · B. P. Kay · T. L. Tang · S. R. Carmichael · M. Gott · S. Lesher · M. S. Martin · G. E. Morgan · J. Wu

Abstract

An yrast, , spin-trap isomer has been previously identified in Si. The isomeric state decays predominantly via a hindered transition [B() = 0.0841(10)~W.u.], bypassing a nearby decay path to the first excited level. The single-neutron aspects of these negative parity levels were investigated via the Si,Si reaction at 9.6~MeV/ using HELIOS and the ATLAS in-flight facility. The state appears as a dominant transfer with a relatively large spectroscopic factor, confirming its single-particle character. The yrast level had a reduced spectroscopic factor of 0.44 compared to that of the level. This is similar to the situation observed in nearby S which by contrast has a measured B() transition strength closer to 1~W.u.. It has been concluded that the hinderance of the transition in Si is not primarily due to the differing overlaps in the neutron structure. Instead, the lack of participation by both the protons and the neutrons in the transition is proposed as the transition-strength reduction mechanism.

Comments: 9 pages, 3 figures