Reference Input Parameter Library-2
International Atomic Energy Agency, Oct 30, 2006 - Business & Economics - 159 pages
The practical use of such nuclear model codes requires a considerable numerical input that describes the properties of the nuclei and the interactions involved. Experts have used a variety of different methods and input data sets, often developed over many years in their own laboratories. Many of these input databases are poorly or not at all documented, and are not always available for other users. With the trend towards reduced funding for nuclear data evaluations, there is a real threat that the immense amount of accumulated knowledge of nuclear data input parameters and associated calculations may be compromised or even lost for future applications. Therefore, the IAEA has undertaken an extensive coordinated effort to develop a library of evaluated and tested nuclear-model input parameters: RIPL-2.--Publisher's description.
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Average Neutron Resonance Parameters
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7-ray energy 7-ray strength functions 88 C.H.Johnson a-parameters A.J.Koning actinides analysis ANNEX approximation average resonance binding energy Calculations of Nuclear Cardinal splines CC rot closed-form expressions coefficients corresponding coupled-channels cumulative number damping width decay decay modes deformation parameters DELAROCHE dipole EGLO Email ENSDF estimated evaluations excitation energies experimental data Fermi energy Fermi-gas model fission barriers fission cross sections FORTRAN global potentials IAEA IGNATYUK incident included Input Parameter Library Koning level density parameters liquid-drop mass number n spher neutron resonance Nmax Nucl nuclear level densities nuclear reaction nuclei nucleon number of levels Obninsk obtained OMP library optical model potentials p-wave parameterizations parity particles phenomenological Phys PLUJKO proton quasi-particle r-process radiative recommended Reference Input Parameter resonance parameters resonance spacings RIPL rotational saddle point shell corrections shell model shown in Fig spher spherical strength functions superfluid systematics target values Vienna Y.P.Viyogi Zhang