BirBikram Singh
Also known as: Dr. BirBikram Singh
Pondicherry University, RIMT UNIVERSITY, Thapar University, Akal University
About
Dr. BirBikram Singh has guided number of research scholars for their PhD and PG dissertation works in the area of Nuclear Physics. His current research projects/interests are related to the study of low energy Heavy Ion Collisions and Cluster Radioactive Decay using the Cluster Decay Models, based on the Quantum Mechanical Fragmentation Theory. Based upon the research accomplishments, he bagged funding from various Govt. funding agencies for research as well as scientific visits in India and abroad (Belgium, Germany, France and Japan), including a project from DST under the scheme ‘Fast Track Proposals for Young Scientists’. He has published number of research articles in the journals of international repute like Physical Review C, Journal of Physics G: Nuclear and Particle Physics, Nuclear Physics A, etc.
Employment
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Pondicherry University Associate Professor2024 - Present
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RIMT UNIVERSITY Professor2023 - 2024
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Akal University Professor (Physics)2021 - 2023
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Sri Guru Granth Sahib World University Asst. Professor (Physics)2011 - 2021
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Institute of Physics Research2009 - 2011
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Swami Vivekanand Institute of Engineering and Technology Lecturer (Physics)2008 - 2009
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Thapar University Teaching & Research2003 - 2004
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Panjab University Research2001 - 2003
Education
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Thapar University Ph.D., Theoretical Nuclear Physics
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Isospin influence on the decay modes of compound nuclei 58−61Cu* Save
- Investigation of stimulated cluster radioactive decay in nuclei Save
- Dynamical aspects of induced α-decay process under X-ray laser field Save
- Shell closure impact on preformation probability of 14C cluster Save
- Role of angular momentum in the decay modes of hot and rotating compound nucleus 59Cu∗ Save
- Decay analysis of the isotopic chain of compound nuclei Cu*58–61 formed in the reactions Cl35+Mg23–26 Save
- Investigating Li6,7 -induced reactions on U235,238 through a collective clusterization approach Save
- Fusion enhancement within a collective clusterization approach applied to the isotopic chain of neutron-rich light-mass compound nuclei Save
- Decay analysis of 24,25Mg⁎ compound nuclei Save
- Comparative Analysis of 13,14C Induced Reactions on 232Th Target Save