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Entrance channel effects on fission fragment mass distribution in 12 C+ 169 Tm system

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dc.contributor.author Sood, A.
dc.contributor.author Kumar, P.
dc.contributor.author Sahoo, R. N.
dc.contributor.author Singh, P. P.
dc.contributor.author Yadav, A.
dc.contributor.author Sharma, V. R.
dc.contributor.author Sharma, M. K.
dc.contributor.author Singh, D. P.
dc.contributor.author Gupta, U.
dc.contributor.author Aydin, S.
dc.contributor.author Kumar, R.
dc.contributor.author Singh, B. P.
dc.contributor.author Prasad, R.
dc.date.accessioned 2021-08-24T20:49:04Z
dc.date.available 2021-08-24T20:49:04Z
dc.date.issued 2021-08-25
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/2476
dc.description.abstract With an aim to study different aspects of heavy-ion induced reactions following the evolution of compound nucleus formed via complete and/or incomplete fusion, the production cross sections of evaporation residues and fission-like fragments were measured in 12C+169Tm reaction at Elab = 77.18, 83.22, and 89.25 MeV. The recoil-catcher activation technique followed by offline γ spectroscopy was employed to measure the cross sections. Herein, we present the production cross sections of 26 fission-like fragments identified in this work. An attempt has been made to study the isotopic yield distribution and the mass distribution of fission-like fragments to discern various reaction mechanisms. The mass distribution of fissionlike fragments was found to be symmetric and broad substantiating their formation from compound nuclear processes. The mass variances (σ 2 M) has been found to increase monotonically with excitation energy above the Coulomb barrier for deformed 169Tm target, and with increase in mass asymmetry of the system. en_US
dc.language.iso en_US en_US
dc.title Entrance channel effects on fission fragment mass distribution in 12 C+ 169 Tm system en_US
dc.type Article en_US


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