Construction of the collective Hamiltonian in a microscopic model of a nucleus
Teoretičeskaâ i matematičeskaâ fizika, Tome 20 (1974) no. 1, pp. 112-125 Cet article a éte moissonné depuis la source Math-Net.Ru

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On the basis of the Hamiltonian of a microscopic model of a nucleus with arbitrary residual interaction, a Hamiltonian that describes collective quadrupole excitations is constructed. An expression for the potential energy of deformation is obtained and analyzed. The energies of the lowest collective states are calculated for the case when the potential energy has two minima.
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R. V. Jolos; F. Denau; D. Yansen. Construction of the collective Hamiltonian in a microscopic model of a nucleus. Teoretičeskaâ i matematičeskaâ fizika, Tome 20 (1974) no. 1, pp. 112-125. http://geodesic.mathdoc.fr/item/TMF_1974_20_1_a10/

[1] S. T. Belyaev, V. G. Zelevinskii, YaF, 16 (1972), 1195

[2] O. Bor, Problemy sovremennoi fiziki, 1955, no. 9, 3; А. С. Давыдов, Возбужденные состояния атомных ядер, Атомиздат, 1967

[3] S. T. Belyaev, B. A. Rumyantsev, YaF, 3 (1966), 234

[4] M. Brack, J. Damgaard, A. S. Yensen, H. C. Pauli, V. M. Strutinsky, C. Y. Wong, Rev. Mod. Phys., 44 (1972), 320 ; D. A. Arseniev, A. Sobieczewski, V. G. Soloviev, Nucl. Phys., A139 (1969), 269 ; R. K. Sheline, I. Ragnarsson, S. G. Nilsson, Phys. Lett., 41B (1972), 115 | DOI | DOI | DOI

[5] B. Sørensen, Nucl. Phys., A142 (1970), 411

[6] D. R. Bés, G. G. Dussel, Nucl. Phys., A135 (1969), 1 | DOI

[7] D. Janssen, F. Dönau, S. Frauendorf, R. Jobs, Nucl. Phys., A172 (1971), 145 ; В. Г. Картавенко, Р. В. Джолос, Ф. Дэнау, Д. Янсен, ТМФ, 14 (1973), 70 | DOI

[8] V. G. Kartavenko, R. V. Dzholos, Preprint P4-6781, OIYaI, 1973

[9] V. G. Solovev, Teoriya slozhnykh yader, «Nauka», 1971

[10] A. B. Migdal, Teoriya konechnykh fermi-sistem i svoistva atomnykh yader, «Nauka», 1968; Р. В. Джолос, В. Г. Соловьев, ЭЧАЯ, Сб., 1, 1971, 365

[11] S. T. Belyaev, V. G. Zelevinskii, ZhETF, 42 (1962), 1590