Rotating Self-Consistent Fields and Rotational States of Nuclei

The self-consistent equations of the time-dependent Hantree-Fock method are shown to have solutions for rotating potentials. The resulting equation for the moment of inertia differs from that of the cranking model but is identical with that obtained by minimizing the ground state energy of the Hantr...

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Veröffentlicht in:Phys. Rev. Letters 1960-12, Vol.5 (11), p.509-510
Hauptverfasser: Thouless, D. J., Valatin, J. G.
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creator Thouless, D. J.
Valatin, J. G.
description The self-consistent equations of the time-dependent Hantree-Fock method are shown to have solutions for rotating potentials. The resulting equation for the moment of inertia differs from that of the cranking model but is identical with that obtained by minimizing the ground state energy of the Hantree-Fock method with a prescribed expectation value of a total angular momentum compenent. (D.L.C.)
doi_str_mv 10.1103/PhysRevLett.5.509
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source American Physical Society Journals
subjects ANGULAR MOMENTUM
DIFFERENTIAL EQUATIONS
ENERGY
ENERGY LEVELS
EXPECTATION VALUE
HARTREE-FOCK METHOD
MOMENT OF INERTIA
MOMENTUM
NUCLEAR MODELS
NUCLEI
PHYSICS
QUANTUM MECHANICS
ROTATION
title Rotating Self-Consistent Fields and Rotational States of Nuclei
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