Khan F A
Department of Physics, Govt. Degree College Pulwama, Higher Education Department, Srinagar, 190009, J & K, India.
Sci Rep. 2020 Mar 6;10(1):4200. doi: 10.1038/s41598-020-61201-0.
In the Trinity Test, the energy was released not only from the fission of Pu-239 core but also from the fast neutron fission of tamper surrounding it. The high energy photons produced from the fissioning core can also induce fission in U-238 tamper. In this work, an effort has been made, for the first time, to develop an approach to investigate the possibility of photon-induced fission in U-238 tamper used in Trinity Test nuclear weapon. GEF nuclear reaction code, version 2018/1.1 is used to calculate the prompt γ-spectrum from the fast fission of Pu-239 core of the device. It is estimated that 14.5 ton (t) of TNT of the total 21 kT yield of the Trinity nuclear device is contributed by the photo-fission of U-238 tamper.
在“三位一体”核试验中,能量不仅从钚 - 239核心的裂变中释放出来,还从其周围的反射层的快中子裂变中释放出来。裂变核心产生的高能光子也能诱发铀 - 238反射层发生裂变。在这项工作中,首次努力开发一种方法来研究在“三位一体”试验核武器中使用的铀 - 238反射层中光子诱发裂变的可能性。使用GEF核反应代码2018/1.1版来计算该装置钚 - 239核心快裂变产生的瞬发γ能谱。据估计,“三位一体”核装置总21千吨当量中,有14.5吨TNT当量是由铀 - 238反射层的光裂变贡献的。