论文标题

最小化具有多种光栅模式组合的几何相冠状动脉的极化泄漏

Minimizing the polarization leakage of geometric-phase coronagraphs with multiple grating pattern combinations

论文作者

Doelman, David S., Por, Emiel H., Ruane, Garreth, Escuti, Michael J., Snik, Frans

论文摘要

用于地面和空间高对比度成像系统的液体结晶衍射板冠状动脉的设计受光谱带宽和极化泄漏之间的权衡而限制。我们证明,通过将相模式与极化光栅(PG)模式结合在一起,然后直接使用一个或几个单独的PG,我们可以通过将它们从梁中衍射出来来抑制偏振泄漏项。 \ textColor {black} {使用实验室中的两个PGS {使用由单层液体晶体结构组成的两个PG,我们在133 nm的带宽上以大约532 nm的速度显示了超过一个数量级的泄漏抑制。在此中心波长下,我们测量了三个数量级的泄漏抑制。}此外,模拟表明,两个多层液体晶体PGS的组合可以抑制泄漏到$ <10^{ - 5} $ 1-2.5 $ m $ m和$ $ m and $ $ m和$ <10^{ - 10^{-10^{ - 10} $ 650-800 nmm。我们引入了具有三个或更多光栅的多分解溶液,这些溶液可以设计为没有两个圆形极化状态的分离,并且可以更深入地抑制极化泄漏。我们介绍了三颗粒解决方案的模拟,该解决方案在第一个空气环上的$ <10^{ - 10} $从450 nm到800 nm上有泄漏。我们将双胶化概念应用于电荷4的矢量 - 涡流冠状动脉,并在实验室中证明了极化泄漏不再限制基于地面对比度水平的轴上抑制。最后,我们报告了在大型双筒望远镜上安装的双层矢量插度相位板瞳孔平面冠状动脉的成功安装和第一张镜头结果。我们讨论了这些新的Coronagraph体系结构对地面和太空中高对比度成像系统的含义。

The design of liquid-crystal diffractive phase plate coronagraphs for ground-based and space-based high-contrast imaging systems is limited by the trade-off between spectral bandwidth and polarization leakage. We demonstrate that by combining phase patterns with a polarization grating (PG) pattern directly followed by one or several separate PGs, we can suppress the polarization leakage terms by additional orders of magnitude by diffracting them out of the beam. \textcolor{black}{Using two PGs composed of a single-layer liquid crystal structure in the lab, we demonstrate a leakage suppression of more than an order of magnitude over a bandwidth of 133 nm centered around 532 nm. At this center wavelength we measure a leakage suppression of three orders of magnitude.} Furthermore, simulations indicate that a combination of two multi-layered liquid-crystal PGs can suppress leakage to $<10^{-5}$ for 1-2.5 $μ$m and $<10^{-10}$ for 650-800 nm. We introduce multi-grating solutions with three or more gratings that can be designed to have no separation of the two circular polarization states, and offer even deeper suppression of polarization leakage. We present simulations of a triple-grating solution that has $<10^{-10}$ leakage on the first Airy ring from 450 nm to 800 nm. We apply the double-grating concept to the Vector-Vortex coronagraph of charge 4, and demonstrate in the lab that polarization leakage no longer limits the on-axis suppression for ground-based contrast levels. Lastly, we report on the successful installation and first-light results of a double-grating vector Apodizing Phase Plate pupil-plane coronagraph installed at the Large Binocular Telescope. We discuss the implications of these new coronagraph architectures for high-contrast imaging systems on the ground and in space.

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