论文标题

安静的太阳中心与clasp2跨Mg II H&K线观察到的线性极化的肢体变化

Quiet Sun Center to Limb Variation of the Linear Polarization Observed by CLASP2 Across the Mg II h & k Lines

论文作者

Rachmeler, L. A., Bueno, J. Trujillo, McKenzie, D. E., Ishikawa, R., Auchere, F., Kobayashi, K., Kano, R., Okamoto, T. J., Bethge, C. W., Song, D., Ballester, E. Alsina, Belluzzi, L., Aleman, T. del Pino, Yoshida, M., Shimizu, T., Winebarger, A., Kobelski, A. R., Vigil, G. D., De Pontieu, B., Suematsu, Y., Narukage, N., Kubo, M., Sakao, T., Hara, H., Stepan, J., Carlsson, M., Leenaarts, J., Ramos, A. Asensio

论文摘要

CLASP2(染色体层光谱仪2)于2019年4月11日启动了发声火箭任务。CLASP2测量了MG II H&K光谱区域的四个Stokes参数,沿200个弧形狭窄的三个位置在Solar Disk上的三个位置沿着200个脉冲,实现了该区域的第一个空间和远距离溶解的区域。此处介绍的工作的重点是这些共振线的线性极化的中心对中心变化,这是通过太阳大气中各向异性辐射的散射产生的。 Mg II H&K线的线性极化信号通过汉尔和磁光效应对磁场敏感。我们将观察结果与未经辐射转移计算的理论预测进行了比较,这是需要磁场和水平渗透率来解释观察到的极化信号和空间变化。这种比较是验证和完善我们对这些极化特征的物理起源的理解,以及铺平了通向未来空间望远镜的道路,以通过紫外线光学计探测太阳能上层大气的磁场的道路。

The CLASP2 (Chromospheric LAyer SpectroPolarimeter 2) sounding rocket mission was launched on 2019 April 11. CLASP2 measured the four Stokes parameters of the Mg II h & k spectral region around 2800 Angstroms along a 200 arcsecond slit at three locations on the solar disk, achieving the first spatially and spectrally resolved observations of the solar polarization in this near ultraviolet region. The focus of the work presented here is the center-to-limb variation of the linear polarization across these resonance lines, which is produced by the scattering of anisotropic radiation in the solar atmosphere. The linear polarization signals of the Mg II h & k lines are sensitive to the magnetic field from the low to the upper chromosphere through the Hanle and magneto-optical effects. We compare the observations to theoretical predictions from radiative transfer calculations in unmagnetized semi-empirical models, arguing that magnetic fields and horizontal inhomogeneities are needed to explain the observed polarization signals and spatial variations. This comparison is an important step in both validating and refining our understanding of the physical origin of these polarization signatures, and also in paving the way toward future space telescopes for probing the magnetic fields of the solar upper atmosphere via ultraviolet spectropolarimetry.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源