A C-code for combining a Langevin fission dynamics of hot nuclei with a statistical model including evaporation of light particles and giant dipole γ-quanta

Published: 1 December 1997| Version 1 | DOI: 10.17632/6mcfbyyhpw.1
Contributors:
I. Gontchar, L.A. Litnevsky, P. Fröbrich

Description

Abstract We present a C-code calculating the decay of highly excited and rotating atomic nuclei by fission and light particle (neutrons, protons, α-particles, giant dipole γ-quanta) evaporation. The program calculates the distributions of the relevant observables, their averages, variances and correlations. The most important output parameters are: fission (respectively survival) probabilities, pre-scission neutron and charged-particle multiplicities and spectra, pre-scission gamma-multiplicities and ... Title of program: DESCEND Catalogue Id: ADGX_v1_0 Nature of problem The code calculates distributions of observables characterizing the deexcitation of highly excited and rotating atomic nuclei by fission and light particle and giant dipole gamma evaporation. Averages, variances and correlations of some observables are also calculated. The most important of the output parameters are: fission (respectively survival) probabilities, pre-scission neutron and charged-particle multiplicities and spectra, pre-scission gamma multiplicities and spectra, average energies ... Versions of this program held in the CPC repository in Mendeley Data ADGX_v1_0; DESCEND; 10.1016/S0010-4655(97)00108-2 This program has been imported from the CPC Program Library held at Queen's University Belfast (1969-2019)

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Categories

Nuclear Physics, Computational Physics

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