Large-scale deformed QRPA calculations of the gamma-ray strength function based on a Gogny force

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Abstract

The dipole excitations of nuclei play an important role in nuclear astrophysics processes in connection with the photoabsorption and the radiative neutron capture that take place in stellar environment. We present here the results of a large-scale axially-symmetric deformed QRPA calculation of the γ-ray strength function based on the finite-range Gogny force. The newly determined γ-ray strength is compared with experimental photoabsorption data for spherical as well as deformed nuclei. Predictions of γ-ray strength functions and Maxwellian-averaged neutron capture rates for Sn isotopes are also discussed.

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Martini, M., Goriely, S., Hilaire, S., Péru, S., & Minato, F. (2016). Large-scale deformed QRPA calculations of the gamma-ray strength function based on a Gogny force. In Journal of Physics: Conference Series (Vol. 665). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/665/1/012058

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