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Preparation for a neutronics experiment using a discharge fusion device and an imaging plate neutron detector

机译:使用放电聚变装置和成像板中子探测器进行中子学实验的准备

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Tritium breeding ratio (TBR) is one of the most important parameters determining the tritium self-sufficiency of a deuterium-tritium fusion reactor. A neutronics experiment is planned to measure the spectral neutron fluences two-dimensionally (2D) using a discharge-type compact fusion neutron source and a neutron imaging plate (NIP), respectively. We report a calibration method for the NIP and optimization of the discharge condition to enhance the neutron production rate. A linear relationship between the neutron fluence in the NIP and photostimulated luminescence (PSL) per area was obtained in the range of the neutron fluence from 10(3) to 10(7) n/cm(2). A neutron production rate higher than 10(7) n/s was successfully achieved by the optimized discharge condition. It is shown that a quantitative 2D measurement by the NIP is feasible using the linear relationship and a correlation coefficient on the energy spectrum.
机译:BR繁殖率(TBR)是决定氘-聚变反应堆the自给性的最重要参数之一。计划进行中子学实验,分别使用放电型紧凑聚变中子源和中子成像板(NIP)二维(2D)测量光谱中子注量。我们报告了NIP的校准方法和排放条件的优化,以提高中子生产率。在中子通量从10(3)到10(7)n / cm(2)的范围内,获得了NIP中子注量与每个区域的光刺激发光(PSL)之间的线性关系。通过优化的放电条件成功地实现了高于10(7)n / s的中子生产率。结果表明,使用线性关系和能谱上的相关系数,通过NIP进行二维二维测量是可行的。

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