Published December 2022 | Version v1
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Search for cluster radioactivity in No isotopes

  • 1. Department of Physics, Aligarh Muslim University, Aligarh - 202002 (India)

Description

Presently, the superheavy elements (SHE) investigations are the salient multidisciplinary region for nuclear and atomic physics. Numerous studies have been carried out on the decay modes of heavy and superheavy nuclei using theoretical models as well as experiments. These decay modes (alpha, beta, and gamma) leaded by the synthesis of superheavy nuclei far away from the stability line. The discovery of cluster radioactivity like the isotopes of C and O, from heavy and superheavy nuclei precede to feasible shell or sub-shell closure at parent and daughter nuclei. In order to fabricate artificial superheavy nuclei, one must have detailed understanding of dominant decay mode among these decay modes and spontaneous fission (SF). The main motive of our present analysis is to investigate the ground state properties, alpha decay, and cluster radioactivity of Nobelium isotopes in the region A∼248264. From the present investigation of Q-values and the corresponding half-lives of alpha decay and cluster radioactivity, the predicted results with different formalisms are in reason away from experimental data. This suggests the model as well as the model parameter dependence in the present study

Part of:
Proceedings of the DAE-BRNS symposium on nuclear physics. V. 66

Additional details

Publishing Information

Publisher
Cotton University
Imprint Place
Guwahati (India)
Imprint Title
Proceedings of the DAE-BRNS symposium on nuclear physics. V. 66
Imprint Pagination
[1318 p.]
Journal Page Range
[2 p.]

Conference

Title
66. DAE-BRNS symposium on nuclear physics
Dates
1-5 Dec 2022
Place
Guwahati (India)

INIS

Country of Publication
India
Country of Input or Organization
India
INIS RN
54037636
Subject category
S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ALPHA DECAY; BETA DECAY; CLUSTER EMISSION MODEL; HALF-LIFE; Q-VALUE; SPONTANEOUS FISSION
Descriptors DEC
DECAY; ENERGY; FISSION; MATHEMATICAL MODELS; MULTIPERIPHERAL MODEL; NUCLEAR DECAY; NUCLEAR REACTIONS; PARTICLE MODELS; PERIPHERAL MODELS

Optional Information

Notes
Article No. A118