论文标题

在24年内用LASCO-C3冠状动脉冠冕冠状光(1996-2019]) - 应用于K/F分离并确定电子密度

Coronal Photopolarimetry with the LASCO-C3 Coronagraph over 24 Years [1996-2019] -- Application to the K/F Separation and to the Determination of the Electron Density

论文作者

Lamy, Philippe, Gilardy, Hugo, Llebaria, Antoine, Quemerais, Eric, Ernandes, Fabrice

论文摘要

我们介绍了大角度光谱冠状动脉/卢斯科-C3在船上SOHO的极化通道的深入表征。白光图像的极化分析利用了偏光序列,该序列由三个通过以+60 $^\ Circ $,0 $^\ Circ $的极化器获得的三个图像和-60 $^\ Circ $组成,并由邻近的未极化图像补充。但是,0 $^\ circ $偏振器在1999年注意到的降解迫使我们重建了此后其他图像的相应图像。该分析仔细遵循了针对LASCO-C2开发的方法(Lamy等人的太阳能物理学295、89、2020和Arxiv:2001.05925),并实现了Mueller的形式主义,尽管尤其具有额外的困难,这是杂散光的非用途对称成分的存在。临界校正是从SOHO滚动序列和一致性标准(例如极化的切向方向)得出的。在两个完整的太阳周期23和24上对外电晕进行了准无中断的光极化分析,我们的最终结果涵盖了其极化辐射,二维电子密度和k-corona的极化表征。 C3和C2结果之间的比较,其中其视野重叠显示了总体一致。 C3的结果与日食和无线电范围的测量结果进一步吻合,达到约10个太阳半径的伸长率,但往往会进一步差异。冠状极化至20太阳半径仍然与总磁场的时间变化高度相关,但这种差异可能是由于F-Corona的极化增加而引起的。

We present an in-depth characterization of the polarimetric channel of the Large-Angle Spectrometric COronagraph/LASCO-C3 onboard SOHO. The polarimetric analysis of the white-light images makes use of polarized sequences composed of three images obtained through three polarizers oriented at +60$^\circ$, 0$^\circ$, and -60$^\circ$, complemented by a neighboring unpolarized image. However, the degradation of the 0$^\circ$ polarizer noticed in 1999 compelled us to reconstruct the corresponding images from the other ones thereafter. The analysis closely follows the method developed for LASCO-C2 (Lamy, et al. Solar Physics 295, 89, 2020 and arXiv:2001.05925) and implements the formalism of Mueller, albeit with additional difficulties notably the presence of a non-axially symmetric component of stray light. Critical corrections were derived from a SOHO roll sequence and from consistency criteria (e.g., the tangential direction of polarization). The quasi-uninterrupted photopolarimetric analysis of the outer corona over two complete Solar Cycles 23 and 24 was successfully achieved and our final results encompass the characterization of its polarization, of its polarized radiance, of the two-dimensional electron density, and of the K-corona. Comparison between the C3 and C2 results where their field of view overlaps shows an overall agreement. The C3 results are further in agreement with those of eclipses and radio ranging measurements to an elongation of about 10 solar radii but tend to diverge further out. Whereas the coronal polarization out to 20 solar radii is still highly correlated with the temporal variation of the total magnetic field, this divergence probably results from the increasing polarization of the F-corona.

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