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Proton recoil telescope based on diamond detectors for measurement of fusion neutrons

机译:基于金刚石探测器的质子反冲望远镜用于测量聚变中子

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Diamonds are very promising candidates for the neutron diagnostics in harsh environments such as fusion reactor. In the first place this is because of their radiation hardness, exceeding that of Silicon by an order of magnitude. Also, in comparison to the standard on-line neutron diagnostics (fission chambers, silicon based detectors, scintillators), diamonds are less sensitive to 7 rays, which represent a huge background in fusion devices. Finally, their low leakage current at high temperature suppresses the detector intrinsic noise. In this talk a CVD diamond based detector has been proposed for the measurement of the 14 MeV neutrons from D-T fusion reaction. The detector was arranged in a proton recoil telescope configuration, featuring a plastic converter in front of the sensitive volume in order to induce the (n, p) reaction. The segmentation of the sensitive volume, achieved by using two crystals, allowed to perform measurements in coincidence, which suppressed the neutron elastic scattering background. A preliminary prototype was assembled and tested at FNG (Frascati Neutron Generator, ENEA), showing promising results regarding efficiency and energy resolution.
机译:钻石是核聚变反应堆等恶劣环境中中子诊断的极有希望的候选者。首先,这是因为它们的辐射硬度比硅高一个数量级。而且,与标准的在线中子诊断程序(裂变室,硅基探测器,闪烁体)相比,钻石对7射线的敏感性较低,这代表了聚变设备的广阔背景。最后,它们在高温下的低泄漏电流抑制了检测器的固有噪声。在本次演讲中,提出了一种基于CVD金刚石的探测器,用于测量D-T聚变反应产生的14 MeV中子。该探测器以质子反冲望远镜配置,在敏感体积的前面设有一个塑料转换器,以引发(n,p)反应。通过使用两个晶体对敏感体积进行分割,可以同时进行测量,从而抑制了中子弹性散射本底。初步原型在FNG(Frascati中子发生器,ENEA)上组装和测试,在效率和能量分辨率方面显示出令人鼓舞的结果。

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