200 MeV以下光子诱发50,51V核反应数据理论计算

Theoretical Calculation of Photonuclear Reaction Data for 50,51V with Photon Energy below 200 MeV

  • 摘要: 光核反应数据在辐射损伤、反应堆剂量、加速器屏蔽等方面有重要应用。本工作基于MEND-G程序,对200 MeV能量范围内光子诱发50,51V核反应数据进行理论计算,给出包含中子、质子、4He等主要出射粒子的核反应的数据;对光子诱发V同位素核反应的实验测量进行自洽性分析,结合光子强度函数和准氘模型,将光核反应吸收截面计算能力提升到200 MeV,为光核反应理论计算提供数据基础。经系统比对,理论计算值与实验测量值一致性很好,数据收录在即将发布的CENDL-3.2光核子数据库中。

     

    Abstract: Photonuclear reaction data are very important for a large range of applications, such as the radiation damage, reactor dosimetry, accelerator shielding, etc. Based on MEND-G program, the photonuclear reaction data of neutrons, protons, 4He and other major emergent particles for 50,51V in the energy range of 0 to 200 MeV were calculated theoretically. The self-consistent analysis of the experimental measurement of photon-induced V isotope nuclear reaction was performed. The photon strength function and the quasi-deuteron model were used to increase the calculation capability of the photonuclear reaction absorption cross section to 200 MeV, providing data basis for the theoretical calculation of photonuclear reactions. After systematic comparison, the theoretical calculations are in good agreement with the experimental measurements, and the data are included in the sub-library of coming CENDL-3.2 for photonuclear data.

     

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