首页> 外文会议>Conference on polarization science and remote sensing VIII >Polarization Modeling and Predictions for DKIST Part 2: Application of the Berreman Calculus to Spectral Polarization Fringes of Beamsplitters and Crystal Retarders
【24h】

Polarization Modeling and Predictions for DKIST Part 2: Application of the Berreman Calculus to Spectral Polarization Fringes of Beamsplitters and Crystal Retarders

机译:DKIST第2部分的偏振建模和预测:Berreman Calcume对光束分布器和晶体延迟器的光谱偏振条的应用

获取原文
获取外文期刊封面目录资料

摘要

We outline polarization fringe predictions derived from a new application of the Berreman calculus for the Daniel K. Inouye Solar Telescope (DKIST) retarder optics. The DKIST retarder baseline design used 6 crystals, single-layer anti-reflection coatings, thick cover windows and oil between all optical interfaces. This new tool estimates polarization fringes and optic Mueller matrices as functions of all optical design choices. The amplitude and period of polarized fringes under design changes, manufacturing errors, tolerances and several physical factors can now be estimated. This tool compares well with observations of fringes for data collected with the SPINOR spectropolarimeter at the Dunn Solar Telescope using bi-crystalline achromatic retarders as well as laboratory tests. With this new tool, we show impacts of design decisions on polarization fringes as impacted by anti-reflection coatings, oil refractive indices, cover window presence and part thicknesses. This tool helped DKIST decide to remove retarder cover windows and also recommends reconsideration of coating strategies for DKIST. We anticipate this tool to be essential in designing future retarders for mitigation of polarization and intensity fringe errors in other high spectral resolution astronomical systems.
机译:我们概述了达尔曼微积分的偏振边缘预测,为丹尼尔K. Inouye太阳能望远镜(DKIST)延迟光学器件。 DKIST延迟器基线设计使用了6个晶体,单层防反射涂层,厚盖窗口和所有光学接口之间的油。作为所有光学设计选择的功能,该新工具估计偏振边缘和光学橡胶矩阵。现在可以估计在设计变化,制造误差,公差和几种物理因素下的偏振条纹的幅度和周期。该工具与使用双晶过旋转器以及实验室测试的DUNN太阳能望远镜在DUNN太阳能望远镜上用扫描仪分光波拉米计收集的数据的观察结果很好。通过这种新工具,我们显示了设计决策对由抗反射涂层,油折射率,盖板存在和部件厚度影响的极化条纹的影响。该工具帮助Dkist决定拆下延迟器盖窗,并建议重新考虑DKIST的涂层策略。我们预计该工具在设计未来的延迟器方面是在其他高光谱分辨率的天文系统中减轻偏振和强度条纹误差的必要条件。

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