2003•AIP conference proceedingsOpen access

Gross Shell Structure Of Moments Of Inertia

M. A. Deleplanque

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Abstract

Average yrast moments of inertia at high spins, where the pairing correlations are expected to be largely absent, were found to deviate from the rigid‐body values. This indicates that shell effects contribute to the moment of inertia. We discuss the gross dependence of moments of inertia and shell energies on the neutron number in terms of the semiclassical periodic orbit theory. We show that the ground‐state shell energies, nuclear deformations and deviations from rigid‐body moments of inertia are all due to the same periodic orbits.

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Average yrast moments of inertia at high spins, where the pairing correlations are expected to be largely absent, were found to deviate from the rigid‐body values. This indicates that shell effects contribute to the moment of inertia. We discuss the gross dependence of moments of inertia and shell energies on the neutron number in terms of the semiclassical periodic orbit theory. We show that the ground‐state shell energies, nuclear deformations and deviations from rigid‐body moments of inertia are all due to the same periodic orbits.

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Available abstract

Average yrast moments of inertia at high spins, where the pairing correlations are expected to be largely absent, were found to deviate from the rigid‐body values. This indicates that shell effects contribute to the moment of inertia. We discuss the gross dependence of moments of inertia and shell energies on the neutron number in terms of the semiclassical periodic orbit theory. We show that the ground‐state shell energies, nuclear deformations and deviations from rigid‐body moments of inertia are all due to the same periodic orbits.

Key concepts: Moment of inertia, Yrast, Physics, Inertia, Semiclassical physics, Shell (structure), Euler's equations, Spins

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