论文标题

矢量构图的新概念coronagraphy

New concepts in vector-Apodizing Phase Plate coronagraphy

论文作者

Bos, Steven P., Doelman, David S., Miller, Kelsey L., Snik, Frans

论文摘要

矢量构型相板(VAPP)是一个瞳孔平面的冠状动物,该冠状会操纵相,以在恒星PSF中形成黑洞。通过空间改变半波液晶层的快速轴向取向,通过固有的出色几何相位在圆极化状态下诱导该相。可以通过四分之一波板(QWP)将两个极化的PSF分开,然后是偏振梁插曲仪(PBS),用于宽带操作,或用于窄带或IFS操作的极化敏感光栅(PSG)。在这里,我们提出了新的VAPP概念,以提高以前设计的限制并报告其性能。我们证明了QWP+PBS组合对组件的耐受性紧密,以防止非曲子光泄漏到深孔中。我们使用基于多色全息图的创新两阶段的液晶元件系统提出了一种新的宽带设计,减轻了泄漏问题和放松的制造公差。此外,我们已经表明,焦平面波前传感(FPWF)可以通过不对称的学生整合到VAPP中。但是,这种VAPP遭受吞吐量的减少,并且仅在窄带操作中使用PSG证明了这种VAPP。我们提出了高级设计,可维持吞吐量并启用相位和振幅波前传感。我们还提出宽带VAPP FPWFS设计并概述宽带FPWFS算法。最后,以前的双光束VAPP设计具有单方面暗孔的敏感偏光法非常复杂。我们展示了新的双光束设计,可显着降低复杂性。

The vector-Apodizing Phase Plate (vAPP) is a pupil-plane coronagraph that manipulates phase to create dark holes in the stellar PSF. The phase is induced on the circular polarization states through the inherently achromatic geometric phase by spatially varying the fast axis orientation of a half-wave liquid-crystal layer. The two polarized PSFs can be separated, either by a quarter-wave plate (QWP) followed by a polarizing beamsplitter (PBS) for broadband operation, or a polarization sensitive grating (PSG) for narrowband or IFS operation. Here we present new vAPP concepts that lift the restrictions of previous designs and report on their performance. We demonstrated that the QWP+PBS combination puts tight tolerances on the components to prevent leakage of non-coronagraphic light into the dark-hole. We present a new broadband design using an innovative two-stage patterned liquid-crystal element system based on multi-color holography, alleviating the leakage problem and relaxing manufacturing tolerances. Furthermore, we have shown that focal-plane wavefront sensing (FPWFS) can be integrated into the vAPP by an asymmetric pupil. However, such vAPPs suffer from a reduced throughput and have only been demonstrated with a PSG in narrowband operation. We present advanced designs that maintain throughput and enable phase and amplitude wavefront sensing. We also present broadband vAPP FPWFS designs and outline a broadband FPWFS algorithm. Finally, previous dual-beam vAPP designs for sensitive polarimetry with one-sided dark holes were very complex. We show new dual-beam designs that significantly reduce the complexity.

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