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Prog. Theor. Phys. Supplement No.74 & 75 (1983) pp. 1-32
The Nuclear Field Theory
Daniel R. Bes
Physics Department, Comision Nacional de Energia Atomica, Buenos Aires
(Received August 9, 1982)
Abstract:
The nuclear field theory (NFT) is presented here with particular emphasis on its foundations. The following points are discussed: i) the equivalence between pure fermion and NFT operators (including the Hamiltonian), ii) the results from an exactly soluble example, iii) the appropriate expansion parameter and the convergence of the corresponding perturbation series and iv) the extension to deformed systems. This is accomplished through the derivation of both the deformed Hamiltonian (superfluid case) and of the perturbational treatment appropriate for deformed basis.
URL :
http://ptp.ipap.jp/link?PTPS/74/1/
DOI : 10.1143/PTPS.74.1
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Citing Article(s) :
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Progress of Theoretical Physics Vol. 117 No. 3 (2007) pp. 451-478
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Gauge-Invariant Formulation of the Adiabatic Self-Consistent Collective Coordinate Method
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Nobuo Hinohara, Takashi Nakatsukasa, Masayuki Matsuo and Kenichi Matsuyanagi
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Progress of Theoretical Physics Vol. 119 No. 1 (2008) pp. 59-101
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Microscopic Derivation of Collective Hamiltonian by Means of the Adiabatic Self-Consistent Collective Coordinate Method
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Nobuo Hinohara, Takashi Nakatsukasa, Masayuki Matsuo and Kenichi Matsuyanagi