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ARTICLE

Phenomenological level density model with hybrid parameterization of deformed and spherical state densities

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Pages 412-424 | Received 12 Dec 2018, Accepted 25 Feb 2019, Published online: 17 Mar 2019

References

  • Gilbert A, Cameron AGW. A composite nuclear level density formula with shell corrections. Can J Phys. 1965;43:1446.
  • Mengoni A, Nakajima Y. Fermi-gas model parametrization of nuclear level density. J Nucl Sci Technol. 1994;31:151–162.
  • Koning AJ, Hilaire S, Goriely S. Global and local level density models. Nucl Phys A. 2008;810:13–76.
  • Ignatyuk AV, Istekov KK, Smirenkin GN. Role of collective effects in the systematics of nuclear level densities. Sov J Nucl Phys. 1979;29:450.
  • Goriely S. A new nuclear level density formula including shell and pairing correction in the light of a microscopic model calculation. Nucl Phys A. 1996;605:28–60.
  • Demetriou P, Goriely S. Microscopic nuclear level densities for practical applications. Nucl Phys A. 2001;695:95–108.
  • Minato F. Nuclear level densities with microscopic statistical method using a consistent residual interaction. J Nucl Sci Technol. 2011;48:984–992.
  • Hilaire S, Delaroche JP, Girod M. Combinatorial nuclear level densities based on the Gogny nucleon-nucleon effective interaction. Eur Phys J A. 2001;12:169–184.
  • Hilaire S, Goriely S. Global microscopic nuclear level densities within the HFB plus combinatorial method for practical applications. Nucl Phys A. 2006;779:63–81.
  • Goriely S, Hilaire S, Koning AJ. Improved microscopic nuclear level densities within the hartree-fock-bogoliubov plus combinatorial method. Phys Rev C. 2008;78:064307.
  • Hilaire S, Girod M, Goriely S, et al. Temperature-dependent combinatorial level densities with the D1M Gogny force. Phys Rev C. 2012;86:064317.
  • Bour A, Mottelson BR. Nuclear structure vols I and II. New York: W. A. Benjamin Inc; 1969, 1975.
  • Shibata K, Osamu I, Tsuneo N, et al. JENDL-4.0: A new library for nuclear science and engineering. J Nucl Sci Technol. 2011;48:1.
  • Junghans AR, M DJ, Clerc H-G, et al. Projectile-fragment yields as a probe for the collective enhancement in the nuclear level density. Nucl Phys A. 1998;629:635.
  • Hansen G, Jensen AS. Energy dependence of the rotational enhancement factor in the level density. Nucl Phys. 1983;406:236.
  • Iwamoto O, Iwamoto N, Kunieda S, et al. The CCONE code system and its application to nuclear data evaluation for fission and other reactions. Nucl Data Sheets. 2016;131:259–288.
  • Myers WD, Swiatecki WJ. Nuclear masses and deformations. Nucl Phys. 1966;81:1.
  • Mughabghab SF, Dunford C. Nuclear level density and the effective nucleon mass. Phys Rev Lett. 1998;81:4083.
  • Stoitsov MV, Schunck N, Kortelainen M, et al. Axially deformed solution of the skyrme-hartree-fock-bogoliubov equations using the transformed harmonic oscillator basis (II) HF BTHO v2.00d: A new version of the program. Comp Phys Commun. 2013;184:1592–1604.
  • Bartel J, Quentin P. Towards a better parametrisation of Skyrme-like effective forces: a critical study of the SkM force. Nucl Phys A. 1982;386:79–100.
  • Capote R, Herman M, Obložinský P, et al. RIPL - reference input library for calculation of nuclear reactions and nuclear data evaluations. Nucl Data Sheets. 2009;110:3107–3214.
  • Koning AJ, Delaroche JP. Local and global nucleon optical models from 1 keV to 200 MeV. Nucl Phys A. 2003;713:231–310.
  • Otuka N, Dupont E, Semkova V, et al. Towards a more complete and accurate experimental nuclear reaction data library (EXFOR): international collaboration between nuclear reaction data centres (NRDC). Nucl Data Sheets. 2014;120:272–276.
  • Frehaut J, Bertin A, Bois R, et al. Status of (n, 2n) cross section measurements at bruyeres-le-chatel. In: Bhat MR, Pearlstein S, editors. Proceedings of symposium on neutron cross-sections from 10 to 50 MeV. Upton (NY): Brookhaven National Laboratory; 1980 May 12–14. p. 399–411.
  • Vonach H, Pavlik A, Strohmaier B. Accurate determination of (n, 2n) cross sections for heavy nuclei from neutron production spectra. Nucl Sci Eng. 1990;106:409–414.

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