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- W2550522300 abstract "The understanding of island of stability beyond Z=82 and N=126, is one of the most sorted aspect in present context. For this, enormous experimental and theoretical work have been made in different scientific centers around the globe. To locate the land of the superheavy elements, the successful application of macroscopic-microscopic, relativistic and non-relativistic mean field theories suggested that the superheavy magic proton shell should exist at Z=114 or 120 or 126 with the neutron magic number predicted at N =172 or 184. The experimental efforts to approach the superheavy mass region are undertaken by the well known cold and hot fusion processes followed by various decay channels such as neutron evaporation, fusion-fission and quasifission. The α-decay and spontaneous fission are also assigned as the main disintegration channels of heavy and superheavy nuclei, which usually occur from the residual nucleus formed subsequent to the neutron evaporation process. In addition to this, theoretical analysis of heavy particle radioactivity (HPR) with Z >110 is also an ongoing quest for the decay of superheavy nuclei. In view the above discussion, the present work contains the analysis of various decay modes from a number of superheavy compound nuclei, ranging Z=104-117, using Dynamical Cluster Decay Model (DCM)[1], which is the reformulation of the Preformed Cluster Model (PCM) [2]. The difference in DCM and PCM lies in the fact that temperature and angular momentum effects are duly incorporated in former framework whereas such effects remain silent in the later" @default.
- W2550522300 created "2016-11-30" @default.
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- W2550522300 date "2015-08-12" @default.
- W2550522300 modified "2023-10-16" @default.
- W2550522300 title "Dynamics of nuclear reactions in superheavy mass region" @default.
- W2550522300 hasPublicationYear "2015" @default.
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