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The Development of the High Energy Particle Detector onboard the SELENE spacecraft

机译:梅琳航天器上高能粒子探测器的开发

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The PS (Particle Spectroscopy) sensor, that will be onboard the SELENE spacecraft for the first Japanese lunar mission to be launched in 2005, will measure the high energy cosmic ray particles to measure a radiation environment around the moon for human activities in the future and to study their acceleration and propagation in the solar system. The PS sensor consists of 4 detectors: High energy Isotope Detector (HID), Low energy Particle Detector for Heavy ions (LPD-HE), Low energy Particle Detector for proton (LPD-p) and Low energy Particle Detector for electron (LPD-e). These are Si stuck detectors using the ΔE × E method that are cover the energy range from 100keV to 60MeV for proton, from 30keV to a few MeV for electron and from 3MeV/n to 400MeV/n for heavy ions, respectively. We use a new type B{sup}+ doped Si(Li) detector of which thickness is from 1 to 6mm with high energy resolution for each sensor. We can identify the isotopes for heavy ions from He to Xe by the PS sensor.
机译:PS(粒子光谱)传感器,即在2005年首次发射的日本月球任务上的Selene航天器的传感器将测量高能宇宙射线颗粒,以测量未来人类活动的辐射环境和研究他们在太阳系中的加速和传播。 PS传感器由4个探测器组成:高能同位素检测器(HID),用于重离子(LPD-HE)的低能量粒子检测器,用于质子(LPD-P)的低能粒子检测器和用于电子的低能粒子检测器(LPD- e)。这些是使用ΔE×e方法的Si卡住探测器,该方法覆盖从100kev至60mev的能量范围,从30kev到几个MeV的电子和3mev / n至400mev / n分别用于重离子。我们使用新的B {SUP} +掺杂Si(Li)检测器,其中厚度为每个传感器的高能量分辨率为1至6mm。我们可以通过PS传感器识别从HE到XE的重离子的同位素。

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