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- W4311185811 abstract "Dissipative dynamics of nuclear fission is a well confirmed phenomenon described either by a Kramers-modified statistical model or by a dynamical model employing the Langevin equation. Though dynamical models as well as statistical models incorporating fission delay are found to explain the measured fission observables in many studies, it nonetheless shows conflicting results for shell closed nuclei in the mass region 200. Analysis of recent data for neutron shell closed nuclei in excitation energy range 40$-$80 MeV failed to arrive at a satisfactory description of the data and attributed the mismatch to shell effects and/or entrance channel effects, without reaching a definite conclusion. In the present work we show that a well established stochastic dynamical code simultaneously reproduces the available data of pre-scission neutron multiplicities, fission and evaporation residue excitation functions for neutron shell closed nuclei $^{210}$Po and $^{212}$Rn and their isotopes $^{206}$Po and $^{214,216}$Rn without the need for including any extra shell or entrance channel effects. The calculations are performed by using a phenomenological universal friction form factor with no ad-hoc adjustment of model parameters. However, we note significant deviation, beyond experimental errors, in some cases of Fr isotopes." @default.
- W4311185811 created "2022-12-24" @default.
- W4311185811 creator A5003265967 @default.
- W4311185811 creator A5081726571 @default.
- W4311185811 creator A5086929720 @default.
- W4311185811 date "2023-03-01" @default.
- W4311185811 modified "2023-09-23" @default.
- W4311185811 title "Investigating the fission dynamics of the following neutron shell closed nuclei within a stochastic dynamical approach: <sup>210</sup>Po, <sup>212</sup>Rn, and <sup>213</sup>Fr*" @default.
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- W4311185811 doi "https://doi.org/10.1088/1674-1137/aca7e2" @default.
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