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一种用于氘 - 氚聚变等离子体诊断的金刚石基中子谱仪。

A diamond based neutron spectrometer for diagnostics of deuterium-tritium fusion plasmas.

作者信息

Cazzaniga C, Nocente M, Rebai M, Tardocchi M, Calvani P, Croci G, Giacomelli L, Girolami M, Griesmayer E, Grosso G, Pillon M, Trucchi D M, Gorini G

机构信息

University of Milano Bicocca, Piazza della Scienza 3, Milano, Italy.

Istituto di Fisica del Plasma, Associazione EURATOM-ENEA-CNR, via Roberto Cozzi 53, Milano, Italy.

出版信息

Rev Sci Instrum. 2014 Nov;85(11):11E101. doi: 10.1063/1.4885356.

Abstract

Single crystal Diamond Detectors (SDD) are being increasingly exploited for neutron diagnostics in high power fusion devices, given their significant radiation hardness and high energy resolution capabilities. The geometrical efficiency of SDDs is limited by the size of commercially available crystals, which is often smaller than the dimension of neutron beams along collimated lines of sight in tokamak devices. In this work, we present the design and fabrication of a 14 MeV neutron spectrometer consisting of 12 diamond pixels arranged in a matrix, so to achieve an improved geometrical efficiency. Each pixel is equipped with an independent high voltage supply and read-out electronics optimized to combine high energy resolution and fast signals (<30 ns), which are essential to enable high counting rate (>1 MHz) spectroscopy. The response function of a prototype SDD to 14 MeV neutrons has been measured at the Frascati Neutron Generator by observation of the 8.3 MeV peak from the (12)C(n, α)(9)Be reaction occurring between neutrons and (12)C nuclei in the detector. The measured energy resolution (2.5% FWHM) meets the requirements for neutron spectroscopy applications in deuterium-tritium plasmas.

摘要

鉴于其显著的抗辐射能力和高能量分辨率,单晶金刚石探测器(SDD)在高功率聚变装置的中子诊断中得到了越来越广泛的应用。SDD的几何效率受市售晶体尺寸的限制,而市售晶体的尺寸通常小于托卡马克装置中沿准直视线方向的中子束尺寸。在这项工作中,我们展示了一种由12个金刚石像素排列成矩阵组成的14 MeV中子谱仪的设计与制造,以提高几何效率。每个像素都配备有独立的高压电源和经过优化的读出电子设备,以结合高能量分辨率和快速信号(<30 ns),这对于实现高计数率(>1 MHz)光谱分析至关重要。通过观察探测器中中子与(12)C核之间发生的(12)C(n,α)(9)Be反应产生的8.3 MeV峰,在弗拉斯卡蒂中子发生器上测量了一个SDD原型对14 MeV中子的响应函数。测量得到的能量分辨率(半高宽为2.5%)满足氘 - 氚等离子体中中子光谱应用的要求。

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