A Study on Correcting the Effect of Polarization Crosstalk in Full-Disk Solar Photospheric Magnetic Field Observations

SOLAR PHYSICS(2022)

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摘要
Magnetography using magnetic sensitive lines is regarded traditionally as the main instrument for measuring the magnetic field of the whole Sun. Full polarized Stokes parameters ( I , Q , U , V ) can be used to deduce the magnetic field under specific theoretical models or inversion algorithms. Due to various reasons, there are often cross-talk effects among Stokes signals observed directly by magnetographs. Especially, the circularly polarized signal V usually seriously affects the linearly polarized Q and U signals, which is one of the main errors in the value of the transverse magnetic field (parallel to the solar surface) that is related to Q and U . The full-disk magnetograph onboard the Advanced Space based Solar Observatory (ASO-S/FMG) is designed to observe Stokes parameters and deduce the magnetic-field vector. In this article, the methods for correcting the effects of cross-talk V on Q and U based on the assumption of perfectly symmetric Q and U and anti-symmetric Stokes V profiles and a new method for reducing the crosstalk effect under observation mode of the FMG are developed. Through the test, it is found that the two methods are effective in cross-talk removal in the sunspot region and have better consistency. Additionally, the developed method can be applied to remove the cross-talk effect by using only one group of Q , U and V images observed at one wavelength position.
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关键词
Solar magnetic field,Polarimetric measurements,Radiative transfer
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