Abstract
In the angular range 10°–120°, the angular distributions of tritons from the reaction 13C(3He, t)13N induced by 3He nuclei of energy 60 MeV are measured for transitions to the ground state (J π=1/2−) of the 13N nucleus and to its excited states at E x=2.365 MeV (1/2+) and E x=3.51 MeV (3/2−)+3.55 MeV (5/2+). A theoretical analysis of these data is performed within the distorted-wave method under the assumption of the one-step charge-exchange mechanism. This analysis employs a microscopic form factor that takes into account the central and tensor components of nucleon-nucleon interaction. It is shown that an acceptable description of the experimental data in question is achieved with potentials whose volume integrals do not exceed 300 MeV fm3.
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Translated from Yadernaya Fizika, Vol. 66, No. 1, 2003, pp. 51–58.
Original Russian Text Copyright © 2003 by Burtebaev, Duisebaev, Sakuta.
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Burtebaev, N., Duisebaev, A. & Sakuta, S.B. Refractive effects in the reaction 13C(3He, t)13N at an energy of 60 MeV. Phys. Atom. Nuclei 66, 47–55 (2003). https://doi.org/10.1134/1.1540656
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DOI: https://doi.org/10.1134/1.1540656