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Solar and Heliospheric Observatory/Large Angle Spectrometric Coronagraph Polarimetric Calibration

机译:太阳和日球天文台/大角度光谱仪日冕仪极化校准

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We present a polarimetric characterization and correction for the Solar and Heliospheric Observatory/Large Angle Spectrometric Coronagraph (SOHO/LASCO) C2 and C3 white light coronagraphs. By measuring the uncorrected polarization angles in solar minimum C2 coronal images, we have determined that the coronagraph acts as an optical phase retarder which converts a small fraction of the incoming radiation polarization from linear to circular. In addition, from the measurements of polarization angle in C3 coronal images we have determined that a component of the instrumentally scattered light in that instrument is polarized. We infer the retardation angle for C2 and compute the corresponding Mueller matrix, and determine the polarized stray light spatial profile in C3. The C2 Mueller matrix and C3 polarized stray light profiles are used to correct for instrumental effects in solar minimum coronal observations to obtain polarized brightness between two and thirty-two solar radii, which show deep polar coronal holes extending to the limit of the field of view.
机译:我们介绍了对太阳和日球天文台/大角度光谱日冕仪(SOHO / LASCO)C2和C3白光日冕仪的极化特征和校正。通过测量太阳最小C2日冕图像中未校正的偏振角,我们确定了日冕仪可作为光学相位延迟器,将一小部分入射辐射偏振从线性转换为圆形。另外,从C3冠状图像中偏振角的测量结果,我们确定该仪器中仪器散射光的一部分已偏振。我们推断C2的延迟角并计算相应的Mueller矩阵,并确定C3中的偏振杂散光空间分布。 C2 Mueller矩阵和C3偏振杂散光轮廓用于校正太阳最低日冕观测中的仪器效应,以获得两到32个太阳半径之间的偏振亮度,这表明深极冠日冕孔扩展到视场范围。

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