首页> 外文期刊>Astronomy and astrophysics >Detection of spatially structured scattering polarization of Sr I 4607.3 ? with the Fast Solar Polarimeter
【24h】

Detection of spatially structured scattering polarization of Sr I 4607.3 ? with the Fast Solar Polarimeter

机译:Sr I 4607.3?的空间结构散射极化的检测快速太阳旋光仪

获取原文
           

摘要

Context . Scattering polarization in the Sr I 4607.3 ? line observed with high resolution is an important diagnostic of the Sun’s atmosphere and magnetism at small spatial scales. Investigating the scattering polarization altered by the Hanle effect is key to constraining the role of small-scale magnetic activity in solar atmospheric activity and energy balance. At present, spatially resolved observations of this diagnostic are rare and have not been reported as close to the disk center as for μ = 0.6. Aims. Our aim is to measure the scattering polarization in the Sr I line at μ = 0.6 and to identify the spatial fluctuations with a statistical approach. Methods. Using the Fast Solar Polarimeter (FSP) mounted on the TESOS filtergraph at the German Vacuum Tower Telescope (VTT) in Tenerife, Spain, we measured both the spatially resolved full Stokes parameters of the Sr I line at μ = 0.6 and the center-to-limb variation of the spatially averaged Stokes parameters. Results. We find that the center-to-limb variation of the scattering polarization in the Sr I line measured with FSP is consistent with previous measurements. A statistical analysis of Stokes Q / I (i.e., the linear polarization component parallel to the solar limb), sampled with 0.16″ pixel~(?1)in the line core of Sr I reveals that the signal strength is inversely correlated with the intensity in the continuum. We find stronger linear polarimetric signals corresponding to dark areas in the Stokes I continuum image (intergranular lanes). In contrast, independent measurements at μ = 0.3 show a positive correlation of Q / I with respect to the continuum intensity. We estimate that the subregion diameter responsible for the excess Q / I signal is on the order of 0.5″–1″. Conclusions. The presented observations and the statistical analysis of Q / I signals at μ = 0.6 complement reported scattering polarization observations as well as simulations. The FSP has proven to be a suitable instrument to measure spatially resolved scattering polarization signals. In the future, a systematic center-to-limb series of observations with subgranular spatial resolution and increased polarimetric sensitivity (<10~(?3)) compared to that in the present study is needed in order to investigate the change in trend with μ that the comparison of our results with the literature suggests.
机译:语境。 Sr I 4607.3中的散射极化?高分辨率观察到的太阳线是对小空间尺度上太阳大气和磁力的重要诊断。研究由汉乐效应改变的散射极化是限制小规模磁活动在太阳大气活动和能量平衡中的作用的关键。目前,这种诊断的空间分辨观察很少见,也没有报道在离磁盘中心最近的地方(μ= 0.6)。目的我们的目标是测量Sr I线在μ= 0.6时的散射极化,并通过统计方法确定空间波动。方法。使用西班牙特内里费岛德国真空塔望远镜(VTT)上安装在TESOS滤镜上的快速太阳旋光仪(FSP),我们测量了μ= 0.6时Sr I线的空间分辨全斯托克斯参数以及中心到空间平均斯托克斯参数的-肢体变化。结果。我们发现用FSP测量的Sr I线中散射极化的中心到边缘变化与以前的测量结果一致。对斯托克斯Q / I(即平行于太阳肢的线性极化分量)的统计分析,在Sr I的线芯中以0.16英寸pixel〜(?1)采样,表明信号强度与强度成反比在连续体中。我们在Stokes I连续谱图像(晶间泳道)中发现了与暗区相对应的更强的线性极化信号。相反,在μ= 0.3处的独立测量结果显示,Q / I与连续谱强度呈正相关。我们估计,负责过量Q / I信号的子区域直径约为0.5“ –1”。结论。提出的观测值和在μ= 0.6时Q / I信号的统计分析补充了散射偏振观测和模拟。事实证明,FSP是测量空间分辨散射极化信号的合适仪器。将来,需要进行与本研究相比具有亚粒度空间分辨率和增加的极化灵敏度(<10〜(?3))的系统的中心到边缘的系列观测,以研究μ趋势的变化。我们的结果与文献的比较表明。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号