论文标题

Magao-X:II阶段的当前状态和计划

MagAO-X: current status and plans for Phase II

论文作者

Males, Jared R., Close, Laird M., Haffert, Sebastiaan, Long, Joseph D., Hedglen, Alexander D., Pearce, Logan, Weinberger, Alycia J., Guyon, Olivier, Knight, Justin M., McLeod, Avalon, Kautz, Maggie, Van Gorkom, Kyle, Lumbres, Jennifer, Schatz, Lauren, Rodack, Alex, Gasho, Victor, Kueny, Jay, Foster, Warren

论文摘要

我们提出了Magao-X的状态更新,Magao-X是2000执行器,3.6 kHz自适应光学和冠状粘土望远镜6.5 m望远镜的状态更新。 Magao-X用于可见波长的高对比度成像。我们的主要科学目标是对太阳系样系外行星的检测和表征,从H-Alpha在H-Alpha中检测到的非常年轻的,仍在检测到的行星到使用反射星光的较旧的温带行星。首先是2019年12月,但随后的调试跑步被取消了Covid-19。在此期间,Magao-X已用作实验室测试。亮点包括实现多个焦平面和低阶波沿感测算法,新的预测控制算法的开发以及添加IFU模块。 Magao-X还充当巨型麦哲伦望远镜高对比度自适应光学测试台的AO系统。我们将提供这些项目的概述,并报告2022年4月运行的调试和科学的结果。最后,我们将介绍Magao-X的全面升级的地位,以使外部球队的极端对比度以反射的光进行。这些升级包括在冠状动脉上进行的新的1000个演员后镜像,最新一代的SCMOS检测器,用于波前传感,优化的PIAACMC冠冕和计算系统升级。当这些II期升级完成后,我们计划在反射光中对附近系外行星进行调查。

We present a status update for MagAO-X, a 2000 actuator, 3.6 kHz adaptive optics and coronagraph system for the Magellan Clay 6.5 m telescope. MagAO-X is optimized for high contrast imaging at visible wavelengths. Our primary science goals are detection and characterization of Solar System-like exoplanets, ranging from very young, still-accreting planets detected at H-alpha, to older temperate planets which will be characterized using reflected starlight. First light was in Dec, 2019, but subsequent commissioning runs were canceled due to COVID-19. In the interim, MagAO-X has served as a lab testbed. Highlights include implementation of several focal plane and low-order wavefront sensing algorithms, development of a new predictive control algorithm, and the addition of an IFU module. MagAO-X also serves as the AO system for the Giant Magellan Telescope High Contrast Adaptive Optics Testbed. We will provide an overview of these projects, and report the results of our commissioning and science run in April, 2022. Finally, we will present the status of a comprehensive upgrade to MagAO-X to enable extreme-contrast characterization of exoplanets in reflected light. These upgrades include a new post-AO 1000-actuator deformable mirror inside the coronagraph, latest generation sCMOS detectors for wavefront sensing, optimized PIAACMC coronagraphs, and computing system upgrades. When these Phase II upgrades are complete we plan to conduct a survey of nearby exoplanets in reflected light.

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