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Neutron Counter Based on Beryllium Activation

机译:基于铍激活的中子计数器

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The fusion reaction occurring in DD plasma is followed by emission of 2.45 MeV neutrons, which carry out information about fusion reaction rate and plasma parameters and properties as well. Neutron activation of beryllium has been chosen for detection of DD fusion neutrons. The cross-section for reaction ~9Be(n, α)~6He has a useful threshold near 1 MeV, which means that undesirable multiple-scattered neutrons do not undergo that reaction and therefore are not recorded. The product of the reaction, ~6He, decays with half-life T_(1/2) = 0.807 s emitting β" particles which are easy to detect. Large area gas sealed proportional detector has been chosen as a counter of β-particles leaving activated beryllium plate. The plate with optimized dimensions adjoins the proportional counter entrance window. Such set-up is also equipped with appropriate electronic components and forms beryllium neutron activation counter. The neutron flux density on beryllium plate can be determined from the number of counts. The proper calibration procedure needs to be performed, therefore, to establish such relation. The measurements with the use of known β-source have been done. In order to determine the detector response function such experiment have been modeled by means of MCNP5 - the Monte Carlo transport code. It allowed proper application of the results of transport calculations of β" particles emitted from radioactive ~6He and reaching proportional detector active volume. In order to test the counter system and measuring procedure a number of experiments have been performed on PF devices. The experimental conditions have been simulated by means of MCNP5. The correctness of simulation outcome have been proved by measurements with known radioactive neutron source. The results of the DD fusion neutron measurements have been compared with other neutron diagnostics.
机译:在DD等离子体中发生的融合反应随后发射2.45meV中子,其开展有关熔融反应速率和血浆参数和性质的信息。选择了铍的中子活化,用于检测DD融合中子。反应〜9be(n,α)〜6h的横截面具有近1mev的有用阈值,这意味着不希望的多散距离子不会经历该反应,因此不会记录。反应的产物〜6He,衰减半衰期T_(1/2)= 0.807的发光β“颗粒易于检测。已选择大面积气体密封比例检测器作为β-粒子的次副激活的铍板。具有优化尺寸的板邻接比例柜台入口窗口。这种设置还配备有适当的电子元件,形成铍中子激活计数器。可以从计数的数量确定铍板上的中子磁通密度。因此,需要执行适当的校准程序以建立这种关系。已经完成了使用已知β-源的测量。为了确定检测器响应函数,这种实验已经通过MCNP5建模 - 蒙特Carlo运输代码。它允许适当地应用从放射性〜6he发出的β“颗粒的运输计算结果,并达到比例探测器主动容积。为了测试计数器系统和测量过程,已经在PF器件上执行了许多实验。通过MCNP5模拟了实验条件。通过用已知的放射性中子源进行测量证明了模拟结果的正确性。将DD融合中子测量结果与其他中子诊断进行了比较。

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