Optical Materials for Astronomy from SCHOTT: The Quality of Large Components

被引:4
|
作者
Jedamzik, Ralf [1 ]
Hengst, Joachim [2 ]
Elsmann, Frank [2 ]
Lemke, Christian [2 ]
Doehring, Thorsten [1 ,2 ]
Hartmann, Peter [1 ]
机构
[1] SCHOTT AG, Hattenbergstr 10, D-55122 Mainz, Germany
[2] SCHOTT AG, Div SCHOTT Lithotec, Jena, Germany
关键词
astronomy; large lenses; optical glass; optical materials; measurement; homogeneity; stress birefringence; Fused Silica; CaF2;
D O I
10.1117/12.788815
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The new generation of survey telescopes and future giant observatories such as E-ELT or TMT do not only require very fast or very large mirrors. but also high sophisticated instruments with the need of large optical materials in outstanding quality. The huge variety of modern optical materials from SCHOTT covers almost all areas of specification needs of optical designers. Even if many interesting optical materials are restricted ill size and/or quality, there is a variety of optical materials that call be produced in large sizes, with excellent optical homogeneity, and a low level of stress birefringence. Some actual examples are high homogeneous N-BK7 blanks with a diameter of LIP to 1000 mm, CaF2 blanks as large as 300 mm which are uscable for IR applications, Fused Silica (LITHOSIL (R)) with dimensions Lip to 700 mm which are used for visible applications, and other optical glasses like FK5, LLF1 and F2 in large formats. In this presentation the latest inspection results of large optical materials will be presented, showing the advances ill production and measurement technology.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Large optical limiting from novel metal-dendrimer nanocomposite materials
    Ispasoiu, RG
    Balogh, L
    Varnavski, OP
    Tomalia, DA
    Goodson, T
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (44) : 11005 - 11006
  • [32] AUTOMATED APPARATUS FOR GRINDING LARGE OPTICAL-COMPONENTS
    AISIN, TM
    UMNOV, YN
    TSESNEK, LS
    SOVIET JOURNAL OF OPTICAL TECHNOLOGY, 1979, 46 (12): : 729 - 730
  • [33] Reactive Ion Figuring of Large Optical Membrane Components
    Li, Zhiwei
    Shao, Junming
    Luo, Qian
    Fan, Bin
    Lei, Baiping
    Gao, Guohan
    Bian, Jiang
    Wu, Shibin
    Du, Junfeng
    AOPC 2020: OPTICS ULTRA PRECISION MANUFACTURING AND TESTING, 2020, 11568
  • [34] THERMAL RESPONSE ANALYSIS OF LARGE APERTURE OPTICAL COMPONENTS
    Zhou Yi
    Lin Dong-hui
    Zhang Jun-wei
    Zhou Hai
    Wang Shi-long
    IMECE 2008: MECHANICAL SYSTEMS AND CONTROL, VOL 11, 2009, : 13 - 18
  • [35] Metrology of large optical components for high power lasers
    Poncetta, JC
    Beau, V
    Daurios, J
    Gaborit, G
    Chabassier, G
    OPTICS FOR THE QUALITY OF LIFE, PTS 1 AND 2, 2003, 4829 : 734 - 735
  • [36] Research on Precise Assembly of Large Optical Components Technology
    Pei, Guoqing
    Xu, Xu
    Du, Weifeng
    Xiong, Zhao
    Ye, Lang
    Yan, Han
    Yuan, Xiaodong
    Zhou, Hai
    Han, Mengmeng
    2016 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION, 2016, : 1798 - 1803
  • [37] Metrology of large optical components for high power lasers
    Beau, V
    Poncetta, JC
    Chabassier, G
    LARGE LENSES AND PRISM, 2002, 4411 : 197 - 203
  • [38] NEW ORGANIC MATERIALS WITH LARGE OPTICAL NONLINEARITIES
    JAIN, K
    HEWIG, GH
    CHENG, YY
    CROWLEY, JI
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 1981, 17 (09) : 1593 - 1595
  • [39] NSO plans large telescope, splits from nighttime astronomy
    Feder, T
    PHYSICS TODAY, 2002, 55 (09) : 29 - 30
  • [40] EFFECT OF TEMPERATURE DEFORMATIONS ON IMAGE QUALITY OF OPTICAL COMPONENTS
    PISHCHIK, GF
    OPTICS AND SPECTROSCOPY-USSR, 1968, 25 (02): : 150 - &