Prog. Theor. Phys. Vol. 55 No. 2 (1976) pp. 471-481
Effect of the Pauli Principle and Channel Coupling on the Nuclear Reactions. II
— Six-Nucleon System
Department of Physics, Niigata University, Niigata
(Received June 20, 1975)
The effect of the Pauli principle on nuclear reactions of a six-nucleon system is investigated in the presence of a breakup channel, by using the resonating group method (RGM). The microscopic treatment with full exchange effects for the t(3He, d)4He reaction is examined together with the 3He-t and d-4He elastic scattering. It is shown that the exchange effects (especially owing to the Pauli principle) play an important role in the differential cross section in the backward region. The t(3He, d)4He reaction is examined by decomposing the reaction processes into three terms, that is, proton stripping, neutron pick-up and residual processes. The asymmetry of the angular distribution for the t(3He, d)4He reaction is also discussed.
DOI : 10.1143/PTP.55.471
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Citing Article(s) :
Progress of Theoretical Physics Vol. 57 No. 4 (1977) pp. 1277-1288
Effect of the Pauli Principle and Channel Coupling on the Nuclear Reaction. III
Tsuneo Kaneko and Hiroyuki Kanada
Progress of Theoretical Physics Supplement No.62 (1977) pp. 11-89
Chapter II. Theory of Resonating Group Method and Generator Coordinate Method, and Orthogonality Condition Model