000 a
999 _c10311
_d10311
003 OSt
005 20191129152347.0
008 191129b xxu||||| |||| 00| 0 eng d
040 _aAIKTC-KRRC
_cAIKTC-KRRC
100 _98563
_aKaur, Amandeep
245 _aFission fragmentation analysis of 211At* nucleus formed in 19F+192Os reaction
250 _aVol.57(8), Aug
260 _aNew Delhi
_bNISCAIR
_c2019
300 _a576-579p.
520 _aThe fission decay of 211At* compound nucleus formed in 19F + 192Os reaction has been studied using dynamical cluster-decay model (DCM) and the calculated fission cross-sections find nice agreement with the experimental data. The DCM - calculated preformation probability P0 suggests the multimodal fission distribution of 211At* nucleus which is systematically analyzed over a wide energy range (Ec.m = 75.7 MeV - 95.3 MeV). The behavior of fragment mass distribution shows that the contribution of asymmetric fragments is predominant across the Coulomb barrier. However, the contribution of symmetric component is relatively more at below barrier region. The range of fission fragments is identified for the decay of 211At* compound nucleus, where 85Br and its complementary fragment 126Sn form the most preferred fission-pair, independent of incident energy. Finally, a comparison of peak ratio of the symmetric and asymmetric fission fragments is worked out as a function of incident energy for having better insight of fragmentation path in the fissioning channel. Beside this, the dependence of fission fragment mass distribution on angular momentum (l) is duly addressed at extreme centre-of-mass energies.
650 0 _94642
_aHumanities and Applied Science
700 _910822
_aSharma, Manoj K.
773 0 _x0019-5596
_dNew Delhi CSIR-NISCAIR
_tIndian journal of pure & applied physics (IJPAP)
856 _uhttp://nopr.niscair.res.in/bitstream/123456789/49775/1/IJPAP%2057%288%29%20576-579.pdf
_yClick here
942 _2ddc
_cAR