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arXiv:2609.21489·v1·Nuclear Theory

Microscopic analysis of M1 scissors mode in No

V.O. Nesterenko · M.A. Mardyban · A. Repko

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Abstract

The low-energy orbital scissors mode (SM) was recently observed by Oslo group in deformed nucleus No. This is the heaviest nucleus where SM was ever experimentally found. We propose the analysis of SM, together with the spin-flip resonance, within fully self-consistent Quasiparticle Random-Phase Approximation (QRPA) with Skyrme forces SG2, SLy4 and SLy5. The impact of "tensor" -term, introduced by perturbative (on the base of SG2) and consistent (SLy5) ways, is analyzed and shown to be noticeable but not decisive. The deformation-induced coupling of and states is inspected. The calculations reasonably describe Oslo's experimental data. The best agreement is obtained for SLy5. A fine structure of SM in No is predicted. A significant constructive interference of the dominant orbital and minor spin-flip contributions to strength at SM energy region is found. What is remarkable, our analysis of distributions of the convective nuclear currents challenges the scissors-like flow usually assumed for SM.

Comments: 12 pages, 6 figures, submitted to Phys. Rev. C