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Hard X-ray polarimetry with the Ramaty High Energy Solar Spectroscopic Imager (RHESSI)

机译:硬X射线偏振型与Ramaty高能太阳光谱成像仪(Rhesei)

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Although designed primarily as a hard X-ray imager and spectrometer, the Ramaty High Energy Solar Spectroscopic Imager (RHESSI) is also capable of measuring the polarization of hard X-rays (20―100 keV) from solar flares. This capability arises from the inclusion of a small unobstructed Be scattering element that is strategically located within the cryostat that houses the array of nine germanium detectors. The Ge detectors are segmented, with both a front and rear active volume. Low energy photons (below about 100 keV) can reach a rear segment of a Ge detector only indirectly, by scattering. Low energy photons from the Sun have a direct path to the Be and have a high probability of Compton scattering into a rear segment of a Ge detector. The azinmthal distribution of these scattered photons carries with it a signature of the linear polarization of the incident flux. Sensitivity estimates, based on simulations and in-flight background measurements, indicate that a 20―100 keV polarization sensitivity of less than a few percent can be achieved for X-class flares.
机译:虽然主要设计为硬X射线成像仪和光谱仪,但是RAMATY高能量太阳能光谱成像仪(Rhessi)还能够测量来自太阳耀斑的硬X射线(20-100keV)的极化。这种能力源于包含一个小型无障碍的散射元件,该元素策略性地位于低温恒温器内,该元素位于含有九个锗探测器阵列的低温恒温器内。 GE探测器分段,前后主动音量。低能量光子(低于约100keV)可以通过散射间接地间接地到达GE检测器的后部段。来自太阳的低能量光子具有直接路径,并且具有高概率的康普顿散射到GE检测器的后部。这些散射光子的氮素分布载有入射通量的线性偏振的签名。基于模拟和飞行中的背景测量,灵敏度估计表明,对于X级耀斑,可以实现20-100keV的极化敏感度小于几个百分点。

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