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Photo-Neutron Detection Using Cr-39 Solid State Nuclear Track Detector

机译:使用CR-39固态核轨道探测器的光学中子检测

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Photo-neutrons are produced when high energy x-rays interact with various elements by the (r,n) reaction. The production is dependent upon the cross section and binding energy for the (r,n) reaction to occur. The threshold energy required to overcome the binding energy for the production of photo-neutrons is different for different elements. Compared to the direct emission process, most of the photo-neutrons are produced by the evaporation process following resonance in heavy nuclei. Evaporation neutrons are emitted isotropically and have a broad range of energies. In this work, photo-neutron production from lead (Pb) and copper (Cu) were analyzed using CR-39 SSNTD. The 15 MV bremstrahlung x-rays from a Siemens Primus Plus medical linear accelerator was used as the photon source. The passive method developed for the determination of the photo-neutron spectrum from various elements gives comparable results with the theoretical predictions.
机译:当高能X射线与(R,N)反应的各种元素相互作用时,产生光学中子。该生产取决于横截面和对(R,N)反应的结合能量。克服光源生产的阈值能量所需的阈值能量对于不同的元件是不同的。与直接发射过程相比,大多数光子中子由重核中的共振后蒸发过程产生。蒸发中子在各向同性上发出并具有广泛的能量。在这项工作中,使用CR-39 SSNTD分析来自铅(Pb)和铜(Cu)的光学中子生产。来自Siemens Primus Plus医用线性加速器的15 MV Bremstrahlung X射线用作光子源。开发用于确定来自各种元素的光中子谱的被动方法使得具有与理论预测的相当的结果。

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