Coriolis Anti-Pairing Effects on Ground-State Moments of Inertia
Lu Lin, Shang-Fang Tsai
Abstract
Lu Lin, Shang-Fang Tsai
Abstract
Anti-pairing effects of the Coriolis force are treated by applying the Bogoliubov transformation in a single-particle basis of the rotating reference system. The approach leads to state dependent anti-pairing forces. In the cranking model approximation, the calculated ground-state moments of inertia show improved agreements with experimental observations for the rare-earth nuclei.
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Anti-pairing effects of the Coriolis force are treated by applying the Bogoliubov transformation in a single-particle basis of the rotating reference system. The approach leads to state dependent anti-pairing forces. In the cranking model approximation, the calculated ground-state moments of inertia show improved agreements with experimental observations for the rare-earth nuclei.
Key concepts: Pairing, Moment of inertia, Physics, Ground state, Basis (linear algebra), Inertia, Transformation (genetics), State (computer science)