Possibilities of production of transfermium nuclei in charged-particle evaporation channels; Physical Review C; Vol. 94, iss. 4

গ্রন্থ-পঞ্জীর বিবরন
Parent link:Physical Review C.— , 1970-
Vol. 94, iss. 4.— 2016.— [044606, 18 p.]
প্রধান লেখক: Hong J. Juhee
সংস্থা লেখক: Национальный исследовательский Томский политехнический университет Физико-технический институт Кафедра высшей математики и математической физики
অন্যান্য লেখক: Adamyan G. G. Gurgen Grigorjevich, Antonenko N. V. Nikolay Viktorovich
সংক্ষিপ্ত:Title screen
The possibilities of direct production of the isotopes of transfermium nuclei Md259,260, No260,261, Lr261-264, Rf264,265, Db264-268, Sg266-269, Bh266-271, Hs267-274, and Mt270-274 in various asymmetric hot fusion-evaporation reactions are studied. The excitation functions of the formation of these isotopes in the αxn and pxn evaporation channels are predicted for the first time. The optimal reaction partners and conditions for the synthesis of new isotopes are suggested. The products of the suggested reactions can fill a gap of unknown isotopes between the isotopes of heaviest nuclei obtained in the xn evaporation channels of the cold and hot complete fusion reactions.
ভাষা:ইংরেজি
প্রকাশিত: 2016
বিষয়গুলি:
অনলাইন ব্যবহার করুন:https://doi.org/10.1103/PhysRevC.94.044606
বিন্যাস: MixedMaterials বৈদ্যুতিক গ্রন্থের অধ্যায়
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=651805

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330 |a The possibilities of direct production of the isotopes of transfermium nuclei Md259,260, No260,261, Lr261-264, Rf264,265, Db264-268, Sg266-269, Bh266-271, Hs267-274, and Mt270-274 in various asymmetric hot fusion-evaporation reactions are studied. The excitation functions of the formation of these isotopes in the αxn and pxn evaporation channels are predicted for the first time. The optimal reaction partners and conditions for the synthesis of new isotopes are suggested. The products of the suggested reactions can fill a gap of unknown isotopes between the isotopes of heaviest nuclei obtained in the xn evaporation channels of the cold and hot complete fusion reactions. 
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