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7Li + 10B elastic and inelastic scattering
A. T. Rudchik1, V. O. Romanyshyn1, E. I. Koshchy2, A. Budzanowski3, K. W. Kemper4, K. Rusek5, V. D. Głowacka6, V. M. Kyryanchuk1, L. S. Kliczewski3, S. Yu. Mezhevych1, A. V. Mokhnach1, O. A. Momotyuk1, O. A. Ponkratenko1, I. Skwirczyńska3, R. Siudak3, T. Choiński7, V. D. Chesnokova1, B. Czech3, T. Czosnyka7, A. Szczurek3,8
1Institute for Nuclear Research, National Academy of Sciences of Ukraine, Kyiv, Ukraine
2Kharkiv National University, Kharkiv, Ukraine
3H. Niewodniczański Institute of Nuclear Physics, Polish Academy of Sciences, Cracow, Poland
4Florida State University, Tallahassee, Florida, USA
5Soltan Institute for Nuclear Studies, Warsaw, Poland
6Institute of Applied Physics of the Military University of Technology, Warsaw, Poland
7Heavy Ion Laboratory, Warsaw University, Warsaw, Poland
8University of Rzeszów, Rzeszów, Poland
Abstract: Angular distributions of the 7Li + 10В elastic and inelastic scattering were measured at the energy Elab(10B) = 51 MeV (21 MeV c.m.). These and previously measured 7Li + 10В elastic scattering data known at the 7Li-beam energies 24 MeV (14.1 MeV c.m.) and 39 MeV (22.94 MeV c.m.), were analyzed within the optical model and coupled-reaction-channels method. Elastic and inelastic scattering of 7Li + 10В, reorientation of 7Li and 10В in ground and excited states as well as more important transfers were included in the coupling-channels scheme. The 7Li + 10В potential parameters for the interaction of these nuclei in ground and excited states, parameter energy dependence as well as deformation parameters of 7Li and 10В were deduced. Mechanism of the 7Li + 10В scattering was obtained. Difference between scattering of 7Li + 10В and 7Li + 11В (scattering isotopic effects) was found.
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