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Design Study of a New Miniaturized Radiation Monitor Based on Previous Experience with the Space Application of the Timepix Radiation Monitor (SATRAM)

机译:基于先前经验的新型小型化辐射监测的设计研究(SATRAM)的空间应用

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Funded by the European Space Agency, a miniaturized radiation monitor (MIRAM) is being developed in collaboration of the Institute for Experimental and Applied Physics, Czech Technical University in Prague and ADVACAM s.r.o. in Prague. Within a small, low power consumption and inexpensive unit, this tool provides measurement of the deposited dose and flux estimation for electrons and protons separately to the spacecraft it is attached to. The planned device will integrate a direct-converting pixel detector of the Timepix family (300-1000 μm thick sensor, 256 x 256 pixels, pixel pitch 55 μm), combined with four diodes, providing low power mode and coincidence measurements. Presented are the strategy for the particle-type identification and results from simulations of the detector response for electrons and protons. The strategy and design are based on the experience gained from the investigation of the data received from the Space Application of the Timepix Radiation Monitor (SATRAM) within the last five years. The proficiency of both is analysed using data from MC simulations in Geant4.
机译:由欧洲航天局资助的小型化辐射监测仪(MIRAM)正在建立在布拉格和Advacam S.O.O的实验和应用物理学,捷克技术大学实验和应用物理学研究所的合作开发。在布拉格。在一个小,低功耗和廉价的单元内,该工具可分别为电子和质子的沉积剂量和磁通估计的测量提供,其与其连接的航天器。规划的设备将集成TimePix系列的直接转换像素检测器(300-1000μm厚的传感器,256×256像素,像素间距55μm),与四个二极管组合,提供低功率模式和巧合测量。提出是粒子型识别的策略和电子对电子和质子的响应的模拟结果。战略和设计基于从过去五年内从TimePix辐射监测器(SATRAM)的空间应用所收到的数据的调查中获得的经验。使用GEANT4中的MC模拟数据分析了两者的熟练程度。

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