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POLAR: Design of a novel X-ray polarimeter based on plastic scintillators and MAPMTs

机译:POLAR:基于塑料闪烁体和MAPMT的新型X射线旋光仪的设计

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摘要

POLAR is a space-borne hard X-ray polarimeter whose design has been optimized to measure the level of linear polarization of gamma-ray bursts (GRB) in the energy range of 50–500 keV. In POLAR, the GRB photons undergo Compton scattering in a target constituted by 1600 plastic scintillator bars. The light output from the whole target is read by 25 multi-anode photomultipliers (MAPMTs). The azimuthal distribution of the scattered photons inside the target provides the information on the GRB polarization.To be able to measure polarization of photons with energy as low as 50 keV, an energy threshold for each single channel of maximum 5 keV is required. This introduces strong constraints in the photon collection efficiency. To maximize it, detailed studies of the scintillator bar surfaces and the available wrapping materials have been performed using both Monte Carlo simulations and laboratory measurements. At present, a POLAR demonstration model (2 of the 25 units of the final design) is being tested in the laboratory. The engineering-qualification model will be ready in 2010.
机译:POLAR 是一种星载硬 X 射线旋光仪,其设计经过优化,可测量 50-500 keV 能量范围内伽马射线暴 (GRB) 的线性偏振水平。在 POLAR 中,GRB 光子在由 1600 个塑料闪烁体条构成的目标中经历康普顿散射。整个目标的光输出由 25 个多阳极光电倍增管 (MAPMT) 读取。目标内部散射光子的方位角分布提供了GRB偏振的信息。为了能够测量能量低至50 keV的光子的偏振,每个通道的能量阈值需要最大为5 keV。这给光子收集效率带来了很强的约束。为了最大限度地利用它,使用蒙特卡罗模拟和实验室测量对闪烁体棒表面和可用的包装材料进行了详细研究。目前,POLAR演示模型(最终设计的25个单元中的2个)正在实验室中进行测试。工程资格认证模式将于2010年准备就绪。

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