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Response of a diamond detector sandwich to 14 MeV neutrons

机译:金刚石探测器三明治对14 MeV中子的响应

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In this paper we present the measurement of the response of 50 μm thin diamond detectors to 14 MeV neutrons. Such neutrons are produced in fusion reactors and are of particular interest for HER neutron diagnostics. Among semiconductor detectors diamond has properties most appropriate for harsh radiation and temperature conditions of a fusion reactor. However, 300-500 urn thick diamond detectors suffer significant radiation damage already at neutron fluences of the order of 10~(14) n/cm~2. It is expected that a 50 μm thick diamond will withstand a fluence of > 10~(16) n/cm~2. We tested two 50 μm thick single crystal CVD diamonds, stacked to form a "sandwich" detector for coincidence measurements. The coincidence between two diamonds allows to suppress background and increase detection efficiency. The detector measured the conversion of 14 MeV neutrons, impinging on one diamond, into a particles which were detected in the second diamond in coincidence with nuclear recoil. For ~(12)C(n,α)~9Be reaction the total energy deposited in the detector gives access to the initial neutron energy value. The measured 14 MeV neutron detection sensitivity through this reaction by a detector of an effective area 3×3 mm~2 was 5 × 10~(-7) counts cm~2. This value is in good agreement with Geant4 simulations. The energy resolution of the detector was found to be 870 keV FWHM, but according to Geant4 simulations only about 160 keV FWHM were intrinsic.
机译:在本文中,我们介绍了50μm薄金刚石探测器对14 MeV中子响应的测量。这样的中子在聚变反应堆中产生,并且对于HER中子诊断特别感兴趣。在半导体探测器中,金刚石具有最适合聚变反应堆恶劣辐射和温度条件的特性。但是,300-500微米厚的金刚石探测器在中子注量约为10〜(14)n / cm〜2时已经遭受了明显的辐射损害。预期厚度为50μm的钻石将承受> 10〜(16)n / cm〜2的注量。我们测试了两块50μm厚的单晶CVD金刚石,将它们堆叠起来以形成用于“巧合”测量的“三明治”检测器。两个菱形的重合可以抑制背景并提高检测效率。该探测器测量了撞击到一颗钻石上的14个MeV中子转换成粒子的情况,该粒子在第二颗钻石中与核反冲同时被发现。对于〜(12)C(n,α)〜9Be反应,沉积在检测器中的总能量可以访问初始中子能量值。通过3×3mm 2的有效面积的检测器通过该反应测得的14 MeV中子检测灵敏度为5×10 7 -7 cm 2 / n。该值与Geant4仿真非常吻合。发现探测器的能量分辨率为870 keV FWHM,但根据Geant4模拟,仅约160 keV FWHM是固有的。

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