论文标题
GMT高对比度系外行星仪器GMAGAO-X和GMT高对比度测试床的概念
Concept for the GMT High-Contrast Exoplanet Instrument GMagAO-X and the GMT High-Contrast Phasing Testbed with MagAO-X
论文作者
论文摘要
在这里,我们回顾了GMAGAO-X的当前概念光学机械设计 - 巨型麦哲伦望远镜(GMT)的极端AO(EXAO)系统。 GMAGAO-X高音扬声器可变形镜(DM)设计是新颖的,因为它使用了一组光学分布的学生集,该集合允许七个市售3000个执行的3000个执行器BMC DMS“并行”以有效地创建ELT尺度exao tweeter DM-今天在所有商业商业上可用。 GMAGAO-X“ Parallel DM”高音扬声器将以〜2kHz更新速度使用21,000个执行器,可在频谱的可见和NIR(0.6-1.7微米)中以〜5 MAS分离启用高对比度科学。为了证明我们对Gmagao-X的概念必须进行实验测试:并行DM的光学/机械概念; GMT学生的分阶段;在亚利桑那大学的光学测试床上,将证明解决GMT的“孤立岛效应”。在这里,我们概述了GMTO和亚利桑那大学共同提出的这种“ GMT高对比度测试床”的当前设计,该设计利用了现有的,运营的Magao-X Exao仪器来验证我们对相位感应的方法和AO控制方法,以控制高对比度GMT GMT NGS NGS科学。我们还将强调如何将Gmagao-X安装在GMT的辅助端口上,从而保持重力不变。因为它是重力不变的gmagao-X可以利用浮动光学表来最大程度地减少弯曲和NCP振动。
Here we review the current conceptual optical mechanical design of GMagAO-X --the extreme AO (ExAO) system for the Giant Magellan Telescope (GMT). The GMagAO-X tweeter deformable mirror (DM) design is novel in that it uses an optically distributed set of pupils that allows seven commercially available 3000 actuator BMC DMs to work "in parallel" to effectively create an ELT-scale ExAO tweeter DM --with all parts commercially available today. The GMagAO-X "parallel DM" tweeter will have 21,000 actuators to be used at ~2kHz update speeds enabling high-contrast science at ~5 mas separations in the visible and NIR of the spectrum (0.6-1.7 microns). To prove our concept for GMagAO-X several items must be lab tested: the optical/mechanical concept for the parallel DM; phasing of the GMT pupil; and solving the GMT's "isolated island effect" will all be demonstrated on an optical testbed at the University of Arizona. Here we outline the current design for this "GMT High-Contrast Testbed" that has been proposed jointly by GMTO and the University of Arizona which leverages the existing, operational, MagAO-X ExAO instrument to verify our approach to phase sensing and AO control for high-contrast GMT NGS science. We will also highlight how GMagAO-X can be mounted on the auxiliary port of the GMT and so remain gravity invariant. Since it is gravity invariant GMagAO-X can utilize a floating optical table to minimize flexure and NCP vibrations.