Oscillations of the fusion cross-sections in the 16O+16O reaction; Pramana - Journal of Physics; Vol. 85, iss. 4

Bibliografski detalji
Parent link:Pramana - Journal of Physics
Vol. 85, iss. 4.— 2015.— [P. 653-665]
Glavni autor: Chushnyakova M. V. Mariya Vladimirovna
Autor kompanije: Национальный исследовательский Томский политехнический университет Физико-технический институт Центр измерений свойств материалов
Daljnji autori: Gontchar I. I. Ivan Iljich
Sažetak:Title screen
Evolution of the fusion cross-section in the 16O+16O reaction has been analysed. Itis shown, both analytically and numerically, that in this excitation function some oscillations canbe observed. These oscillations are related to the quantum character of the orbital angular momentumincrease as well as to the distinct features of the 16O+16O reaction. In order to perform thenumerical calculations, the fluctuation–dissipation model and the single barrier penetration modelare used. It turns out that the experimental data available in the literature do not have any definiteproof about the presence or absence of the oscillations. We stress, that the question still remainsunanswered for more than three decades whereas during this time lapse the experimental errors forother reactions are reduced to 1–2%.
Режим доступа: по договору с организацией-держателем ресурса
Jezik:engleski
Izdano: 2015
Teme:
Online pristup:http://dx.doi.org/10.1007/s12043-014-0917-0
Format: Elektronički Poglavlje knjige
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=646900

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330 |a Evolution of the fusion cross-section in the 16O+16O reaction has been analysed. Itis shown, both analytically and numerically, that in this excitation function some oscillations canbe observed. These oscillations are related to the quantum character of the orbital angular momentumincrease as well as to the distinct features of the 16O+16O reaction. In order to perform thenumerical calculations, the fluctuation–dissipation model and the single barrier penetration modelare used. It turns out that the experimental data available in the literature do not have any definiteproof about the presence or absence of the oscillations. We stress, that the question still remainsunanswered for more than three decades whereas during this time lapse the experimental errors forother reactions are reduced to 1–2%. 
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