Zernike wavefront sensor (ZWFS) development for Low Order Wavefront Sensing (LOWFS)

被引:2
|
作者
Wang, Xu [1 ]
Shi, Fang [1 ]
Wallace, J. Kent [1 ]
机构
[1] CALTECH, Jet Prop Lab, 4800 Oak Grove Dr, Pasadena, CA 91109 USA
来源
SPACE TELESCOPES AND INSTRUMENTATION 2016: OPTICAL, INFRARED, AND MILLIMETER WAVE | 2016年 / 9904卷
关键词
Wavefront sensing; Zernike phase contrast; WFIRST; LOWFS;
D O I
10.1117/12.2231252
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
ZWFS is known to be photon noise optimal for measuring low order aberrations. Recently, ZWFS was selected as the baseline LOWFS technology on WFIRST for its sensitivity, accuracy, and its ease of integration with the starlight rejection mask. In this paper, we present the development of ZWFS sensor, including the algorithm description, sensitivity analysis, and some early experimental model validation results from a fabricated ZWFS phase mask on a stand-alone LOWFS testbed.
引用
收藏
页数:9
相关论文
共 43 条
  • [31] ZELDA, a Zernike wavefront sensor for the fine measurement of quasi -static aberrations in coronagraphic systems: concept studies and results with VLT/SPHERE
    N'Diaye, M.
    Vigan, A.
    Dohlen, K.
    Sauvage, J. -F.
    Caillat, A.
    Costille, A.
    Girard, J. H. V.
    Beuzit, J. -L.
    Fusco, T.
    Blanchard, P.
    Le Merrer, J.
    Le Mignant, D.
    Madec, F.
    Moreaux, G.
    Mouillet, D.
    Puget, P.
    Zins, G.
    ADAPTIVE OPTICS SYSTEMS V, 2016, 9909
  • [32] Towards understanding interactions between the AO system and segment co-phasing with the vector-Zernike wavefront sensor on Keck
    Salama, MaIssa
    Guthery, Charlotte
    Chambouleyron, Vincent
    Jensen-Clema, Rebecca
    Wallace, J. Kent
    Troy, Mitchell
    Delorme, Jacques-Robert
    Dillon, Daren
    Echeverri, Daniel
    Xin, Yeyuan
    Xuan, Wen Hao
    Jovanovic, Nemanja
    Mawet, Dimitri
    Wizinowich, Peter L.
    Bowens-Rubin, Rachel
    ADAPTIVE OPTICS SYSTEMS IX, 2024, 13097
  • [33] Low-cost wavefront sensing using artificial intelligence (AI) with synthetic data
    Baudat, Gaston
    OPTICAL SENSING AND DETECTION VI, 2021, 11354
  • [34] Deep Neural Networks to Improve the Dynamic Range of Zernike Phase-Contrast Wavefront Sensing in High-Contrast Imaging Systems
    Allan, Gregory
    Kang, Iksung
    Douglas, Ewan S.
    N'Diaye, Mamadou
    Barbastathis, George
    Cahoy, Kerri
    SPACE TELESCOPES AND INSTRUMENTATION 2020: OPTICAL, INFRARED, AND MILLIMETER WAVE, 2021, 11443
  • [35] Characterization of an off-the-shelf detector for high-order wavefront sensing in solar adaptive optics
    Johnson, Luke C.
    Richards, K.
    Woeger, F.
    Barden, S.
    Rimmele, T.
    ADAPTIVE OPTICS SYSTEMS III, 2012, 8447
  • [36] A piston and tilt wavefront sensor dedicated to the cophasing of segmented optics in low light level conditions
    Rousseaux, Thomas
    Primot, Jerome
    Jaeck, Julien
    Rouze, Bastien
    Le Gall, Cecile
    Bellanger, Cindy
    OPTICS AND LASERS IN ENGINEERING, 2024, 181
  • [37] Development of Microlens Arrays With Large Focal Number and High Fill Factor for Wavefront Sensing Applications
    Agarwal, Amit K.
    Pant, Kamal K.
    Mishra, Sanjay K.
    IEEE SENSORS JOURNAL, 2021, 21 (18) : 20990 - 20997
  • [38] Low-latency, photon-efficient wavefront sensing for ultrafast adaptive optics imaging of the human retina
    Liu, Yan
    Crowell, James A.
    Kurokawa, Kazuhiro
    Bernucci, Marcel T.
    Ji, Qiuzhi
    Lassoued, Ayoub
    Jung, Hae Won
    Miller, Donald T.
    OPHTHALMIC TECHNOLOGIES XXXIII, 2023, 12360
  • [39] Experimental wavefront sensing techniques based on deep learning models using a Hartmann-Shack sensor for visual optics applications
    Ramirez-Quintero, Juan Sebastian
    Osorno-Quiroz, Andres
    Torres-Sepulveda, Walter
    Mira-Agudelo, Alejandro
    SCIENTIFIC REPORTS, 2025, 15 (01):
  • [40] A high-resolution wavefront sensing method to investigate the annular Zernike polynomials behaviour in the indoor convective air turbulence in the presence of a 2D temperature gradient
    Razi, E. Mohammadi
    Rasouli, Saifollah
    Dashti, M.
    Niemela, J. J.
    JOURNAL OF MODERN OPTICS, 2021, 68 (18) : 994 - 1001