论文标题

圣克鲁斯极限AO实验室(密封)测试床上的各种波前传感和控制发展

Various Wavefront Sensing and Control Developments on the Santa Cruz Extreme AO Laboratory (SEAL) Testbed

论文作者

Gerard, Benjamin L., Perez-Soto, Javier, Chambouleyron, Vincent, van Kooten, Maaike A. M., Dillon, Daren, Cetre, Sylvain, Jensen-Clem, Rebecca, Fu, Qiang, Amata, Hadi, Heidrich, Wolfgang

论文摘要

地面高对比度成像(HCI)和极端自适应光学(AO)技术已经发展到可以直接检测到附近年轻星系附近的雪线以外的气体巨型外行星。但是,使用当前的HCI和AO技术剩下的波前错误,在冠状科学图像中被认为是“斑点”,仍然将HCI仪器敏感性限制为检测和表征下质量,更近的质量,近距离和/或较旧/或较旧/较冷/较冷/或较冷的eSplanetary Systems。改善AO波前传感器(WFSS)和控制技术的性能对于提高这种HCI仪器灵敏度至关重要。在这里,我们在圣克鲁斯极限AO实验室(密封)测试台上提出了三种不同的波前传感和控制项目的发展:(1)使用快速大气的自我连通摄像头(SCC)技术(scc)技术(快速)和shartmann wfs,(2)paverator coplation fimator coptront figator copfing figator copfing figator copfing copfing copfore coptront figalt figation figation figator copfing coptront,与常规PWF相比,DM作为仅相调节器的DM作为仅相位调节器,以及(3)实验室证明线性增强的实验室演示。这三个主题都共享多WFS SCAO和/或第二阶段AO的共同主题,并提供了机会和应用,以进一步研究这些技术。

Ground-based high contrast imaging (HCI) and extreme adaptive optics (AO) technologies have advanced to the point of enabling direct detections of gas-giant exoplanets orbiting beyond the snow lines around nearby young star systems. However, leftover wavefront errors using current HCI and AO technologies, realized as "speckles" in the coronagraphic science image, still limit HCI instrument sensitivities to detecting and characterizing lower-mass, closer-in, and/or older/colder exoplanetary systems. Improving the performance of AO wavefront sensors (WFSs) and control techniques is critical to improving such HCI instrument sensitivity. Here we present three different ongoing wavefront sensing and control project developments on the Santa cruz Extreme AO Laboratory (SEAL) testbed: (1) "multi-WFS single congugate AO (SCAO)" using the Fast Atmospheric Self-coherent camera (SCC) Technique (FAST) and a Shack Hartmann WFS, (2) pupil chopping for focal plane wavefront sensing, first with an external amplitude modulator and then with the DM as a phase-only modulator, and (3) a laboratory demonstration of enhanced linearity with the non-modulated bright Pyramid WFS (PWFS) compared to the regular PWFS. All three topics share a common theme of multi-WFS SCAO and/or second stage AO, presenting opportunities and applications to further investigate these techniques in the future.

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