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Response of RadFET Dosimeters to High Fluences of Fast Neutrons

机译:RadFET剂量计对快速中子高通量的响应

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We present irradiation experiments carried out on RadFETs in the high-intensity T2 neutron beam at the CRC-UCL in Belgium. The aim of the test was to characterize the neutron response of RadFETs in view of their use as an integrated part of a radiation-monitoring sensor for the CERN Large Hadron Collider (LHC) experiments. Two types of RadFETs were investigated up to a total neutron fluence of$3times10^14 hbox cm^-2$corresponding to a deposited dose of 744 Gy in silicon. The responses of bare devices to neutrons are compared to the commonly used reference measurements with gamma rays. It is found that the gamma ray calibration cannot directly be adopted to convert the RadFET signals into neutron dose. In a second experiment, the influence of a plastic packaging, simulated by polyethylene slabs of different thicknesses, was tested in the neutron beam and compared to GEANT4 Monte Carlo simulations. An increase of the RadFET neutron sensitivity by a factor of up to 7 due to the packaging is found. The influence of these findings on the conception of the radiation-monitoring sensor is discussed.
机译:我们目前在比利时CRC-UCL的高强度T2中子束中的RadFET上进行辐射实验。该测试的目的是表征RadFET的中子响应,因为它们被用作CERN大型强子对撞机(LHC)实验的辐射监控传感器的集成部分。研究了两种类型的RadFET,其总中子注量高达3×10 ^ 14 hbox cm ^ -2 $,这与在硅中沉积744 Gy的剂量相对应。将裸设备对中子的响应与伽马射线的常用参考测量值进行比较。发现不能直接采用伽马射线校准将RadFET信号转换为中子剂量。在第二个实验中,在中子束中测试了由不同厚度的聚乙烯平板模拟的塑料包装的影响,并将其与GEANT4蒙特卡洛模拟进行了比较。由于封装的原因,发现RadFET中子灵敏度提高了7倍。讨论了这些发现对辐射监测传感器概念的影响。

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