1978Physica ScriptaOpen access

The Cranking Moment of Inertia in a Static Potential

R. Bengtsson, I. Hamamoto, R.H. Ibarra

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Abstract

Taking into account the self-consistency condition for the deformation, we estimate the cranking moment of inertia in the absence of pair-correlations for the Woods-Saxon potential and various versions of the modified oscillator potential. We investigate the expectation that in a static potential the moment of inertia is almost equal to the rigid-body moment of inertia at the self-consistent deformation. We examine especially the consequence of the presence of the l 2 term in the conventional modified oscillator potential.

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Taking into account the self-consistency condition for the deformation, we estimate the cranking moment of inertia in the absence of pair-correlations for the Woods-Saxon potential and various versions of the modified oscillator potential. We investigate the expectation that in a static potential the moment of inertia is almost equal to the rigid-body moment of inertia at the self-consistent deformation. We examine especially the consequence of the presence of the l 2 term in the conventional modified oscillator potential.

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Available abstract

Taking into account the self-consistency condition for the deformation, we estimate the cranking moment of inertia in the absence of pair-correlations for the Woods-Saxon potential and various versions of the modified oscillator potential. We investigate the expectation that in a static potential the moment of inertia is almost equal to the rigid-body moment of inertia at the self-consistent deformation. We examine especially the consequence of the presence of the l 2 term in the conventional modified oscillator potential.

Key concepts: Moment of inertia, Moment (physics), Consistency (knowledge bases), Inertia, Physics, Deformation (meteorology), Classical mechanics, Mechanics

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