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使用单片硅望远镜的中子能谱分析。

Neutron spectrometry with a monolithic silicon telescope.

作者信息

Agosteo S, D'Angelo G, Fazzi A, Para A Foglio, Pola A, Zotto P

机构信息

Dipartimento di Ingegneria Nucleare, Politecnico di Milano, Milano, Italy.

出版信息

Radiat Prot Dosimetry. 2007;126(1-4):210-7. doi: 10.1093/rpd/ncm044. Epub 2007 May 23.

Abstract

A neutron spectrometer was set-up by coupling a polyethylene converter with a monolithic silicon telescope, consisting of a DeltaE and an E stage-detector (about 2 and 500 microm thick, respectively). The detection system was irradiated with monoenergetic neutrons at INFN-Laboratori Nazionali di Legnaro (Legnaro, Italy). The maximum detectable energy, imposed by the thickness of the E stage, is about 8 MeV for the present detector. The scatter plots of the energy deposited in the two stages were acquired using two independent electronic chains. The distributions of the recoil-protons are well-discriminated from those due to secondary electrons for energies above 0.350 MeV. The experimental spectra of the recoil-protons were compared with the results of Monte Carlo simulations using the FLUKA code. An analytical model that takes into account the geometrical structure of the silicon telescope was developed, validated and implemented in an unfolding code. The capability of reproducing continuous neutron spectra was investigated by irradiating the detector with neutrons from a thick beryllium target bombarded with protons. The measured spectra were compared with data taken from the literature. Satisfactory agreement was found.

摘要

通过将聚乙烯转换器与单片硅望远镜耦合,搭建了一台中子谱仪,该望远镜由一个ΔE探测器和一个E探测器组成(厚度分别约为2微米和500微米)。在意大利莱尼亚罗的意大利国家核物理研究所国家实验室(INFN-Laboratori Nazionali di Legnaro),用单能中子对该探测系统进行辐照。对于当前探测器,由E探测器厚度所决定的最大可探测能量约为8兆电子伏特。利用两条独立的电子链获取在两个探测器阶段沉积能量的散射图。对于能量高于0.350兆电子伏特的情况,反冲质子的分布与二次电子的分布能很好地区分开。将反冲质子的实验能谱与使用FLUKA代码的蒙特卡罗模拟结果进行了比较。开发了一个考虑硅望远镜几何结构的分析模型,并在解谱代码中进行了验证和实现。通过用质子轰击厚铍靶产生的中子辐照探测器,研究了再现连续中子能谱的能力。将测量的能谱与文献中的数据进行了比较,发现吻合良好。

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