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Precision in ground-based solar polarimetry: simulating the role of adaptive optics

机译:地面太阳极化法的精度:模拟自适应光学系统的作用

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Accurate measurement of polarization in spectral lines is important for the reliable inference of magnetic fields on the Sun. For ground-based observations, polarimetric precision is severely limited by the presence of Earth's atmosphere. Atmospheric turbulence (seeing) produces signal fluctuations, which combined with the nonsimultaneous nature of the measurement process cause intermixing of the Stokes parameters known as seeing-induced polarization cross talk. Previous analysis of this effect [Appl. Opt. 43, 3817 (2004)] suggests that cross talk is reduced not only with increase in modulation frequency but also by compensating the seeing-induced image aberrations by an adaptive optics (AO) system. However, in those studies the effect of higher-order image aberrations than those corrected by the AO system was not taken into account. We present in this paper an analysis of seeing-induced cross talk in the presence of higher-order image aberrations through numerical simulation. In this analysis we find that the amount of cross talk among Stokes parameters is practically independent of the degree of image aberration corrected by an AO system. However, higher-order AO corrections increase the signal-to-noise ratio by reducing the seeing caused image smearing. Further we find, in agreement with the earlier results, that cross talk is reduced considerably by increasing the modulation frequency.
机译:光谱线中极化的准确测量对于可靠地推断太阳磁场具有重要意义。对于地面观测,极化精度受到地球大气层的严重限制。大气湍流(可见)会产生信号波动,再加上测量过程的非同步性质,会导致斯托克斯参数混合在一起,这就是所谓的可见极化偏振串扰。先前对此效果的分析[Appl。选择。 [J.Am.Chem.Soc.43,3817(2004)]建议,串扰不仅随着调制频率的增加而减小,而且通过补偿由自适应光学(AO)系统引起的视线引起的像差而得以减小。但是,在那些研究中,没有考虑到比由AO系统校正的像差更高的像差的影响。我们在本文中通过数值模拟分析了在存在高阶像差的情况下视听引起的串扰。在此分析中,我们发现斯托克斯参数之间的串扰量实际上与由AO系统校正的像差程度无关。但是,高阶AO校正通过减少可见的图像拖尾现象而增加了信噪比。此外,我们发现,与早期的结果一致,通过增加调制频率可以大大减少串扰。

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