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Off-Plane Grazing Incidence Constellation-X Grating Calibrations using Polarized Synchrotron Radiation and PCGRATE Code Calculations

机译:使用偏振同步辐射和PCGRATE代码计算的平面掠食入射星座X光栅校准

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Efficiency measurements of a grazing-incidence diffraction grating, planned for the Constellation-X Reflection Grating Spectrometer (RGS), were performed using polarized synchrotron radiation at the NRL Brookhaven beamline X24C. The off-plane TM and TE efficiencies of the 5000 groove/mm MIT test grating, patterned on a silicon wafer, were measured and compared to the efficiencies calculated using the PCGRATE-SX code. The calculated and measured efficiencies are in agreement when using groove profiles derived from AFM measurements. The TM and TE efficiencies differ, offering the possibility of performing unique astrophysical science studies by exploiting the polarization sensitivity of the off-plane gratings. The grating calibrations demonstrate the importance of using polarized synchrotron radiation and code calculations for the understanding of the Constellation-X grating performance, in particular the effects of the groove profile and microroughness on the efficiency. The optimization of grazing-incidence gratings, for both the off-plane and in-plane mounts, planned for the RGS and x-ray spectrometers on other missions will require detailed synchrotron measurements and code calculations.
机译:计划在Constellation-X反射光栅光谱仪(RGS)中使用的掠入射衍射光栅的效率测量是在NRL Brookhaven光束线X24C上使用偏振同步辐射进行的。测量在硅晶片上构图的5000凹槽/毫米MIT测试光栅的平面外TM和TE效率,并将其与使用PCGRATE-SX代码计算出的效率进行比较。当使用从AFM测量得出的凹槽轮廓时,计算出的效率和测量的效率是一致的。 TM和TE的效率不同,这通过利用平面外光栅的偏振灵敏度提供了进行独特的天体科学研究的可能性。光栅校准证明了使用偏振同步加速器辐射和代码计算对于理解Constellation-X光栅性能,特别是凹槽轮廓和微粗糙度对效率的影响的重要性。计划用于其他任务的RGS和X射线光谱仪的平面外和平面内安装的掠入射光栅的优化将需要详细的同步加速器测量和代码计算。

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