Clustering of wavefront sensor subapertures to improve adaptive optics system performance

被引:0
|
作者
Brigantic, RT
Roggemann, MC
Welsh, BM
Bauer, KW
机构
来源
关键词
wavefront sensor; subapertures; adaptive optics system; performance; image quality; seeing conditions; light level; Greenwood frequency;
D O I
10.1117/12.279061
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
This paper presents a discussion of the trade-offs between fully and partially compensated adaptive optics systems. The key concept explored was the trade-offs to be made between increasing the system sample spacing by enlarging the size of subapertures and the associated decrease in noise levels at the wavefront sensor. A method to counteract the impact of low light levels on adaptive optics system performance without the use of laser beacons was examined. This method involves the notion of ''clustering'' smaller wavefront sensor subapertures into larger effective wavefront sensor subapertures via software instruction. However, for the modeled 1.6 meter adaptive optics system, no benefit was seen by switching to a clustering scheme.
引用
收藏
页码:551 / 560
页数:10
相关论文
共 50 条
  • [41] Estimating the point spread function of the adaptive optics system ADONIS using the wavefront sensor measurements
    Harder, S
    Chelli, A
    ASTRONOMY & ASTROPHYSICS SUPPLEMENT SERIES, 2000, 142 (01): : 119 - 135
  • [42] Optimization of the transmitted wavefront for the infrared adaptive optics system
    PengQian Yang
    Stefan Hippler
    JianQiang Zhu
    Science China Physics, Mechanics and Astronomy, 2014, 57 : 608 - 614
  • [43] Initial performance testing for the wavefront sensor image acquisition system of the ULTIMATE-Subaru ground-layer adaptive optics
    Terao, Koki
    Minowa, Yosuke
    Ono, Yoshito
    Yoshida, Hiroshige
    Tanaka, Yoko
    Akiyama, Masayuki
    D'Orgeville, Celine
    Rey, Noelia Martinez
    Ogane, Hajime
    ADAPTIVE OPTICS SYSTEMS IX, 2024, 13097
  • [44] Wavefront Modulation in Subapertures of Zonal sensor: a New Approach for Hybrid Slope and Curvature Wavefront Sensing
    Liu, Ke
    Wang, Xiaopeng
    Li, Yanqiu
    2017 CONFERENCE ON LASERS AND ELECTRO-OPTICS EUROPE & EUROPEAN QUANTUM ELECTRONICS CONFERENCE (CLEO/EUROPE-EQEC), 2017,
  • [45] ADAPTIVE OPTICS Optical wavefront sensor samples wavefronts at a nanometric resolution
    Wallace, John
    LASER FOCUS WORLD, 2016, 52 (01): : 32 - +
  • [46] Wavefront response matrix for closed-loop adaptive optics system based on non-modulation pyramid wavefront sensor
    Wang, Jianxin
    Bai, Fuzhong
    Ning, Yu
    Li, Fei
    Jiang, Wenhan
    OPTICS COMMUNICATIONS, 2012, 285 (12) : 2814 - 2820
  • [47] A polychromatic pyramid wavefront sensor with MKID Technology for extreme adaptive optics
    Magniez, Aurelie
    Bardou, Lisa
    Bond, Charlotte Z.
    Barr, David
    Escriche, Marta
    Geng, Deli
    Morris, Timothy J.
    O'Brien, Kieran
    Schwartz, Noah
    de Visser, Pieter J.
    ADAPTIVE OPTICS SYSTEMS IX, 2024, 13097
  • [48] Hybrid curvature/Shack-Hartmann wavefront sensor for adaptive optics
    Paterson, C.
    Dainty, J.C.
    Pacific Rim Conference on Lasers and Electro-Optics, CLEO - Technical Digest, 2000, : 605 - 606
  • [49] Simple broadband implementation of a phase contrast wavefront sensor for adaptive optics
    Bloemhof, EE
    Wallace, JK
    OPTICS EXPRESS, 2004, 12 (25): : 6240 - 6245
  • [50] Adaptive Optics Correction Method Based on Calibration Optimisation of Wavefront Sensor
    Su Chunxuan
    Dong Lizhi
    Fan Xinlong
    Lai Boheng
    Ma Shiqing
    Yang Ping
    Xu Bing
    CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2021, 48 (23):