Calculation and analysis of cross-sections for p+184W reactions up to 200 MeV

  • A set of optimal proton optical potential parameters for p+184W reactions are obtained at incident proton energy up to 250 MeV. Based on these parameters, the reaction cross-sections, elastic scattering angular distributions, energy spectra and double differential cross sections of proton-induced reactions on 184W are calculated and analyzed by using theoretical models which integrate the optical model, distorted Born wave approximation theory, intra-nuclear cascade model, exciton model, Hauser-Feshbach theory and evaporation model. The calculated results are compared with existing experimental data and good agreement is achieved.
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SUN Jian-Ping, ZHANG Zheng-Jun and HAN Yin-Lu. Calculation and analysis of cross-sections for p+184W reactions up to 200 MeV[J]. Chinese Physics C, 2015, 39(8): 084102. doi: 10.1088/1674-1137/39/8/084102
SUN Jian-Ping, ZHANG Zheng-Jun and HAN Yin-Lu. Calculation and analysis of cross-sections for p+184W reactions up to 200 MeV[J]. Chinese Physics C, 2015, 39(8): 084102.  doi: 10.1088/1674-1137/39/8/084102 shu
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Received: 2015-02-11
Revised: 2015-04-21
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Calculation and analysis of cross-sections for p+184W reactions up to 200 MeV

    Corresponding author: ZHANG Zheng-Jun,

Abstract: A set of optimal proton optical potential parameters for p+184W reactions are obtained at incident proton energy up to 250 MeV. Based on these parameters, the reaction cross-sections, elastic scattering angular distributions, energy spectra and double differential cross sections of proton-induced reactions on 184W are calculated and analyzed by using theoretical models which integrate the optical model, distorted Born wave approximation theory, intra-nuclear cascade model, exciton model, Hauser-Feshbach theory and evaporation model. The calculated results are compared with existing experimental data and good agreement is achieved.

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