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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A compact Time-Of-Flight detector for radiation measurements in a space habitat: LIDAL-ALTEA
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A compact Time-Of-Flight detector for radiation measurements in a space habitat: LIDAL-ALTEA

机译:用于空间栖息地的辐射测量的紧凑型飞行时间探测器:LIDAL-ALTEA

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摘要

LIDAL-ALTEA is a detector designed to study the radiation flux and energy spectra in the International Space Station (ISS). Its mission is manifested by NASA in 2019. The ALTEA subsystem, which took data on the ISS in the past Zaconte a al. (2010), is based on Silicon Strip detectors and will measure the released energy of the traversing particles, while the LIDAL subdetector is based on fast plastic scintillators, read by PMTs, will measure the particle Time Of Flight. A custom Front End electronics has been designed to reach a time resolution better than 120 ps. LIDAL is under construction while a prototype has been already tested with a proton beam. The measured time resolution fulfills the design expectation and is compatible with FLUKA simulations. The Monte Carlo results have also been validated by the comparison with a test measure where the ALTEA detector was exposed to proton beams.
机译:LIDAL-ALTEA是一种探测器,旨在研究国际空间站(ISS)中的辐射通量和能谱。它的使命在2019年的美国宇航局表现出来.Atrea子系统,在过去的Zaconte A al上的ISS上获取数据。 (2010),基于硅条探测器,并将测量穿过颗粒的释放能量,而LIDAL Subdetector基于快速塑料闪烁体,由PMTS读取,将测量飞行的粒子时间。自定义前端电子设备设计用于达到优于120 PS的时间分辨率。当已经用质子梁测试原型时,引线正在建设中。测量的时间分辨率满足了设计期望,与Fluka模拟兼容。通过与AlteA检测器暴露于质子梁的测试测量,蒙特卡罗结果也得到了验证的。

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