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R. Meyer, E. Monnand, J. Pinston, F. Schussler, I. Ragnarsson, B. Pfeiffer, H. Lawin, G. Lhersonneau, T. Seo, K. Sistemich (1985)
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P. Moller, J. Nix, W. Myers, W. Swiatecki (1993)
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P. Ring, P. Schuck, M. Strayer (2004)
The Nuclear Many-Body Problem
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[Low-lying levels of the isotope 103, 105Mo are investigated in the framework of the quasiparticle-phonon coupling plus rotor method. The intrinsic and collective states are determined by using the deformed mean field of Nilsson, the monopole-pairing interaction (BCS) and the quadrupole-quadrupole force. Microscopic structure of quadrupole phonon is given from the Tamm-Dancoff Approximation. The two effects of recoil and Coriolis forces are included with the hypothesis of a symmetric rotational motion. The levels schemes of 103, 105Mo are discussed and compared with the experimental data.]
Published: Jan 1, 2012
Keywords: Quasiparticle-phonon Coupling; Tamm-Dancoff Approximation (TDA); Quadrupole Phonon; Monopole Pairing Interaction; Rotation Method
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