MagAO-X: project status and first laboratory results

MagAO-X: project status and first laboratory results
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MagAO-X:项目状态和第一个实验室结果

DOI:
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发表时间:
2018
期刊:
Astronomical Telescopes + Instrumentation
影响因子:
--
通讯作者:
A. Conrad
A. Conrad
中科院分区:
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文献类型:
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作者:
J. Males;L. Close;K. Miller;L. Schatz;D. Doelman;J. Lumbres;F. Snik;A. Rodack;J. Knight;Kyle Van Gorkom;J. Long;A. Hedglen;M. Kautz;N. Jovanovic;K. Morzinski;O. Guyon;Ewan S Douglas;K. Follette;J. Lozi;Chris Bohlman;O. Durney;V. Gasho;P. Hinz;M. Ireland;M. Jean;C. Keller;M. Kenworthy;B. Mazin;J. Noenickx;D. Alfred;Kevin Perez;Anna Sanchez;C. Sauve;A. Weinberger;A. Conrad

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Magao-X是一种全新的极端自适应光学系统,用于麦哲伦粘土6.5米望远镜,由美国国家科学基金会核磁共振计划资助,从2016年9月开始。MAGAO-X的关键科学目标是对在Hα吸积的原行星进行高对比度成像。凭借高达3630赫兹的2040执行器,MAGAO-X将在Hα(656 Nm)下提供高Strehls(>70%)、高分辨率(19ma)和高对比度(<1×10-4)。我们介绍了MAGAO-X系统的概述,回顾了系统设计,并讨论了当前的项目状态。
MagAO-X is an entirely new extreme adaptive optics system for the Magellan Clay 6.5 m telescope, funded by the NSF MRI program starting in Sep 2016. The key science goal of MagAO-X is high-contrast imaging of accreting protoplanets at Hα. With 2040 actuators operating at up to 3630 Hz, MagAO-X will deliver high Strehls (> 70%), high resolution (19 mas), and high contrast (< 1 × 10-4 ) at Hα (656 nm). We present an overview of the MagAO-X system, review the system design, and discuss the current project status.
DOI: 10.1117/12.2312218
发表时间: 2018
期刊: Proceedings of the SPIE
影响因子: --
作者:
Rodack, Alexander T.;Males, Jared R.;Guyon, Olivier;Mazin, Benjamin A.;Fitzgerald, Michael P.;Mawet, Dimitri;Schmidt, Dirk;Schreiber, Laura;Close, Laird M.
通讯作者: Close, Laird M.