薄镜面面形主动校正技术研究

李宏壮, 刘欣悦, 王建立

李宏壮, 刘欣悦, 王建立. 薄镜面面形主动校正技术研究[J]. 应用光学, 2010, 31(1): 118-123.
引用本文: 李宏壮, 刘欣悦, 王建立. 薄镜面面形主动校正技术研究[J]. 应用光学, 2010, 31(1): 118-123.
LI Hong-zhuang, LIU Xin-yue, WANG Jian-li. Active correction technology for thin-mirror surface[J]. Journal of Applied Optics, 2010, 31(1): 118-123.
Citation: LI Hong-zhuang, LIU Xin-yue, WANG Jian-li. Active correction technology for thin-mirror surface[J]. Journal of Applied Optics, 2010, 31(1): 118-123.

薄镜面面形主动校正技术研究

详细信息
    通讯作者:

    李宏壮(1980-),男,黑龙江巴彦人,博士,助理研究员,主要从事光学设计、光学检测及主动光学技术研究。

  • 中图分类号: TN205;TH161.1

Active correction technology for thin-mirror surface

  • 摘要: 采用12个主动支撑点对口径400mm薄实验镜进行面形主动校正,使用Zygo干涉仪测量面形误差,主动支撑点的力促动器由位移促动器和力传感器组成。分别测量单个促动器的响应函数,由各促动器的响应函数组成刚度矩阵,然后用阻尼最小二乘法计算各支撑点的校正力。实验中分析主动支撑结构对各项Zernike形式像差的校正能力,并选择了7项像差进行校正。经过5次校正,使初始状态下1.16(=0.6328m)RMS面形精度达到0.13RMS,接近镜面抛光后的精度。
    Abstract: The surface of a 400mm diameter experiment mirror was corrected by 12 active supports. In the experiment, the surface error was tested by Zygo interferometer. The force actuator of the active support is composed of displacement actuator and load cell. The response functions of each actuator are tested first, the response functions of all the actuators compose the stiffness matrix, and then the active correcting force is calculated through damp least square method. In the experiment, the ability of the active supports for correcting each aberration was analyzed, the mirror surface was corrected to generate a single Zernike polynomial wavefront of 1 (=0.6328m), and seven terms was selected for the correction finally. After 5 times correction, the 1.16 RMS surface shape error of the initial state was corrected to 0.13 RMS, near the surface quality after polishing.
  • [1]IYE M, NOGUCHI T, TORII Y, MIKAMI Y. Ac-tive optics experiments with a 62cm thin mirror[J]. SPIE, 1990,1236:929-939.
    [2]SU Ding-qiang, JIANG Sheng-tao, ZOU Wei-yao, et al. Experiment system of thin-mirror active optics[J]. SPIE,1982,2199:609-621.
    [3]解滨,肖志宏,余景池.利用Zernike多项式分析超薄镜热变形[J]. 光学精密工程,2007,15(2):173-179.
    XIE Bin,XIAO Zhi-hong,YU Jin-chi, Analyzing thermal deformation of ultra-thin mirror using Zernike polynomials[J]. Opt. Precision Eng.,2007,15(2):173-179.(in Chinese with an English abstract)
    [4]NOETHE L,FRANZA F, WILSON R N, et al. Active optics:from the test set up to the NTT in the observatory[J]. SPIE,1989, 1114:314-319.
    [5]曹正林,廖文和,沈建新.Zernike多项式拟合人眼波前像差的一种新算法[J].光学精密工程,2006,14(2):308-314.
    CAO Zhen-lin, LIAO Wen-he, SHEN Jian-xin. A new algorithm for human eye’s wave-front aber-ration fitting with Zernike polynomial[J]. Opt. Precision Eng., 2006,14(2):308-314.(in Chinese with an English abstract)
    [6]王巧彬,任豪,罗宇强,等.基于LabVIEW的LED三维特性检测的研制[J].应用光学,2009,30(3):460-464.
    WANG Qiao-bin,REN Hao, LUO Yu-qiang,et al. Three dimension characteristic measurement of LED based on LabVIEW[J].Journal of Applied Optics, 2009,30(3):460-464.(in Chinese with an English abstract)
    [7]李宏壮,王富国,吴小霞,等.薄镜面主动光学算法的有限元模拟[J]. 光学精密工程,2008,16(专辑):36-42.
    LI Hong-zhuang, WANG Fu-guo, WU Xiao-xia, et al. Finite element simulation of active optics algorithm for thin mirrors[J]. Opt. Precision Eng., 2008,16(sup):36-42.(in Chinese with an English abstract)
计量
  • 文章访问数:  3105
  • HTML全文浏览量:  111
  • PDF下载量:  1096
  • 被引次数: 0
出版历程
  • 刊出日期:  2010-01-14

目录

    /

    返回文章
    返回