The Giant Magellan Telescope Laser Tomography Adaptive Optics System

被引:18
|
作者
Conan, R. [1 ]
Bennet, F. [1 ]
Bouchez, A. H. [3 ]
van Dam, M. A. [2 ]
Espeland, B. [1 ]
Gardhouse, W. [1 ]
d'Orgeville, C. [1 ]
Parcell, S. [1 ]
Piatrou, P. [1 ]
Price, I. [1 ]
Rigaut, F. [1 ]
Trancho, G.
Uhlendorf, K. [1 ]
机构
[1] Australian Natl Univ, RSAA, Weston, ACT 2611, Australia
[2] Flat Wavefronts, Christchurch 8140, New Zealand
[3] GMTO, Pasadena, CA 91109 USA
来源
ADAPTIVE OPTICS SYSTEMS III | 2012年 / 8447卷
基金
美国国家科学基金会;
关键词
GUIDE STAR;
D O I
10.1117/12.924865
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The Giant Magellan Telescope presents a unique optical design with seven 8.4 m diameter primary mirrors matched by seven adaptive secondary mirrors (ASM). The ASMs can be controlled in several different Adaptive Optics (AO) observing modes coupled to the telescope. One of these AO systems, the Laser Tomography Adaptive Optics (LTAO) system is currently in its preliminary design phase. The LTAO observing mode will provide a Strehl ratio in H band of at least 30% over more than 20% of the sky and an ensquared energy in K band of at least 40% in a 50 milli-arcsec spaxel over more than 50% of the sky. To achieve its performance requirements, the LTAO observing mode uses six 20W Laser Guide Stars (LGS) with six order-60x60 Shack-Hartmann wavefront sensors. The LGSs are launched from three locations at the periphery of the telescope primaries. A natural guide star (NGS) is used separately to measure tip-tilt, focus and low-bandwidth-low-order aberrations, as well as telescope segment piston. An open-loop controlled deformable mirror corrects the off-axis NGS infrared wavefront. We give an update on the design of the LTAO WFSs, the LGS facility, the on-instrument wavefront sensors and the tomography and control algorithms.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] The Giant Magellan Telescope's High Contrast Adaptive Optics Testbed: NGAO wavefront sensing and control laboratory results
    Quiros-Pacheco, Fernando
    Bouchez, Antonin
    Plantet, Cedric
    Xin, Bo
    Molgo, Jordi
    Schoenell, William
    Puglisi, Alfio
    Rossi, Fabio
    Schurter, Patricio
    Haddad, Juan Pablo
    Demers, Richard
    Esposito, Simone
    Cheffot, Anne-Laure
    Azzaroli, Nicolo
    Carbonaro, Luca
    Lapucci, Tommaso
    Pinna, Enrico
    Close, Laird
    Haffert, Sebastiaan
    Kautz, Maggie
    Males, Jared
    McLeod, Avalon
    Hedglen, Alexander
    Gasho, Victor
    van Dam, Marcos
    ADAPTIVE OPTICS SYSTEMS IX, 2024, 13097
  • [22] The acquisition, guiding, and wavefront sensing system for the Giant Magellan telescope
    McLeod, Brian
    Catropa, Daniel
    Durusky, Daniel
    Kansky, Jan
    Kopon, Derek
    McCracken, Kenneth
    McMuldroch, Stuart
    Podgorski, William
    Bouchez, Antonin
    GROUND-BASED AND AIRBORNE TELESCOPES VII, 2018, 10700
  • [23] Design and expected performance of an MCAO system for the Giant Magellan Telescope
    Milton, NM
    Lloyd-Hart, M
    Cheng, A
    Georges, JA
    Angel, JR
    ASTRONOMICAL ADAPTIVE OPTICS SYSTEMS AND APPLICATIONS, 2003, 5169 : 238 - 249
  • [24] Latest developments for the Giant Magellan Telescope (GMT) Control System
    Pi, Marti
    Cox, Marianne
    Filgueira, Josema
    Molgo, Jordi
    Thanasekaran, Divya
    Schoenell, William
    Swett, Hector
    Soto, Jose
    Peng, Chien Y.
    Contaxis, Chris
    SOFTWARE AND CYBERINFRASTRUCTURE FOR ASTRONOMY VII, 2022, 12189
  • [25] Science Instruments for the Giant Magellan Telescope
    Millan-Gabet, R.
    Rahmer, G.
    Bernstein, R. A.
    Souza, A.
    Schoenell, W.
    Demers, R.
    Szentgyorgyi, A.
    Fabricant, D.
    Ribeiro, R.
    Sharp, R.
    Jaffe, D. T.
    Lee, S.
    Lawrence, J.
    Crane, J.
    Males, J.
    Nemati, B.
    GROUND-BASED AND AIRBORNE INSTRUMENTATION FOR ASTRONOMY X, 2024, 13096
  • [26] Systems Engineering for the Giant Magellan Telescope
    Angeli, George Z.
    Bernstein, Rebecca
    Walls, Brian
    Bouchez, Antonin
    Conan, Rodolphe
    Irarrazaval, Benjamin
    Sitarski, Breann
    MODELING, SYSTEMS ENGINEERING, AND PROJECT MANAGEMENT FOR ASTRONOMY VIII, 2018, 10705
  • [27] Telescope pier seismic isolation for the Giant Magellan telescope
    Manuel, Eric A.
    Constantinou, Michael C.
    Grigel, Eric
    Bigelow, Bruce C.
    Teran, Jose
    Talison, Bahram
    GROUND-BASED AND AIRBORNE TELESCOPES VII, 2018, 10700
  • [28] Optomechanical design of the Laser Launch Telescope for the GTC Adaptive Optics System
    Moreno, J.
    Saez, D.
    Melendez, J.
    Vazquez, Eloi
    Sanchez, J.
    Salvador, L.
    Aivar, J.
    OPTICAL DESIGN AND ENGINEERING VIII, 2021, 11871
  • [29] Cash boost for Giant Magellan Telescope
    Kruesi, Liz
    1600, IOP Publishing Ltd (33):
  • [30] Construction starts on Giant Magellan Telescope
    Williams, Andrew
    PHYSICS WORLD, 2015, 28 (07) : 8 - 8