Differential deposition correction of segmented glass X-ray optics

被引:7
|
作者
Atkins, Carolyn [1 ]
Kilaru, Kiranmayee [2 ]
Ramsey, Brian D. [2 ]
Broadway, David M. [2 ]
Gubarev, Mikhail V. [2 ]
O'Dell, Stephen L. [2 ]
Zhang, William W. [3 ]
机构
[1] Univ Alabama, Ctr Space Plasma & Aeron Res, Huntsville, AL 35899 USA
[2] NASA Marshall Space Flight Ctr, Huntsville, AL 35812 USA
[3] NASA Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
关键词
Differential deposition; X-ray optics; slumped glass optics; thin film coatings;
D O I
10.1117/12.2189933
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
One of the challenges faced within the astronomical X-ray community is how to produce lightweight high angular resolution optics for a future X-ray mission capable of probing the early X-ray universe. To this end, the differential deposition project at NASA Marshall Space flight Center (MSFC) is looking to improve current Xray optic technology by applying a corrective coating with a goal of achieving arc-second-level resolution. This paper will focus on the correction of segmented glass optics fabricated at NASA Goddard Space Flight Center (GSFC) and the paper will highlight: the design of the vacuum chamber and internal mechanics; the algorithm used to perform the correction; metrology of the glass segments; and the improvement post correction that has been achieved to date.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] Improving X-ray Optics via Differential deposition
    Kilaru, Kiranmayee
    Ramsey, Brian D.
    Kolodziejczak, Jeffery
    Atkins, Carolyn
    OPTICS FOR EUV, X-RAY, AND GAMMA-RAY ASTRONOMY VIII, 2017, 10399
  • [2] Light-weight glass optics for segmented X-ray mirrors
    Winter, Anita
    Breunig, Elias
    Lli, Renzo Cape
    Friedrich, Peter
    Burwitz, Vadim
    Hartner, Gisela
    Menz, Benedikt
    MODERN TECHNOLOGIES IN SPACE-AND GROUND-BASED TELESCOPES AND INSTRUMENTATION II, 2012, 8450
  • [3] Highly accurate differential deposition for X-ray reflective optics
    Handa, Soichiro
    Mimura, Hidekazu
    Yumoto, Hirokatsu
    Kimura, Takashi
    Matsuyama, Satoshi
    Sano, Yasuhisa
    Yamauchi, Kazuto
    SURFACE AND INTERFACE ANALYSIS, 2008, 40 (6-7) : 1019 - 1022
  • [4] Differential deposition for figure correction of x-ray mirrors
    Morawe, Ch.
    Laboure, S.
    Peffen, J-Ch.
    Perrin, F.
    Vivo, A.
    Barrett, R.
    ADVANCES IN X-RAY/EUV OPTICS AND COMPONENTS XIV, 2019, 11108
  • [5] Overview of segmented glass optics development for the Constellation-X Hard X-Ray Telescope
    Hailey, CJ
    Christensen, FE
    Craig, WW
    Harrison, FA
    Koglin, J
    Petre, R
    Windt, DW
    Zhang, W
    X-RAY AND GAMMA-RAY TELESCOPES AND INSTRUMENTS FOR ASTRONOMY, PTS 1 AND 2, 2003, 4851 : 519 - 527
  • [6] X-ray mirror figure correction using differential deposition
    Morawe, Ch
    Laboure, S.
    Perrin, F.
    Vivo, A.
    Barrett, R.
    ADVANCES IN X-RAY/EUV OPTICS AND COMPONENTS XIX, 2024, 13150
  • [7] Design and Analysis of Modules for Segmented X-Ray Optics
    McClelland, Ryan S.
    Biskach, Michael P.
    Chan, Kai-Wing
    Saha, Timo T.
    Zhang, William W.
    SPACE TELESCOPES AND INSTRUMENTATION 2012: ULTRAVIOLET TO GAMMA RAY, 2012, 8443
  • [8] Compensation of fabrication errors in segmented X-ray optics
    Atanassova, Martina
    Zhang, William
    Saha, Timo
    ADVANCES IN X-RAY/EUV OPTICS AND COMPONENTS V, 2010, 7802
  • [9] Segmented X-Ray Optics for Future Space Telescopes
    McClelland, Ryan S.
    2013 IEEE AEROSPACE CONFERENCE, 2013,
  • [10] Glass Monocapillary X-ray Optics And Their Applications In X-ray Microscopy
    Zeng, X.
    Feser, M.
    Huang, E.
    Lyon, A.
    Yun, W.
    X-RAY OPTICS AND MICROANALYSIS, PROCEEDINGS, 2010, 1221 : 41 - 47