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Prog. Theor. Phys. Vol. 53 No. 5 (1975) pp. 1392-1405
A Microscopic Description of Nuclear Rotational Motion in Terms of Solid Harmonics Expansion of the Pair Operator. I
— Classical Theory
—
Akihisa Hayashi and
Masatoshi Yamamura
Department of Physics, Kyoto University, Kyoto
(Received November 9, 1974)
Abstract:
A microscopic theory of nuclear rotational motion in the framework of the classical theory is proposed with the aim of achieving a full quantum theory. The basic idea is the c-number replacement of the pair operator together with the use of certain dynamical and kinematical constraints of the pair operator. In contrast to the Hartree-Bogoliubov theory applied to the cranking Hamiltonian, the spherical symmetry is not violated at any stage.
URL :
http://ptp.ipap.jp/link?PTP/53/1392/
DOI : 10.1143/PTP.53.1392
References:
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Citing Article(s) :
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Progress of Theoretical Physics Vol. 55 No. 5 (1976) pp. 1462-1476
:
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A Microscopic Description of Nuclear Rotational Motion in Terms of Solid Harmonics Expansion of the Pair Operator. II
-
Akihisa Hayashi and Masatoshi Yamamura
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Progress of Theoretical Physics Vol. 56 No. 1 (1976) pp. 124-134
:
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An a priori Quantized Time-Dependent Hartree-Bogoliubov Theory
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Masatoshi Yamamura and Seiya Nishiyama
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Progress of Theoretical Physics Vol. 62 No. 3 (1979) pp. 681-689
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On the Canonical Variables Derived from the Schwinger Boson Representation for the Quantized Rotator
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Masatoshi Yamamura
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Progress of Theoretical Physics Supplement No.58 (1975) pp. 1-8
:
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Introduction
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Atsushi Kuriyama, Toshio Marumori and Kenichi Matsuyanagi
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Progress of Theoretical Physics Supplement No.71 (1981) pp. 1-47
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Chapter 1. Present Status of the Microscopic Study of Low-Lying Collective States in Spherical and Transitional Nuclei
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Toshio Marumori, Kenjiro Takada and Fumihiko Sakata