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Polarization shearing laser interferometer for aligning segmented telescope mirrors

机译:用于对准分段望远镜镜的偏振剪切激光干涉仪

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The Center of Curvature Alignment Sensor (CCAS) was the original instrument installed in the center of curvature (CoC) tower on the Hobby-Eberly Telescope (HET) for aligning the 91 primary mirror segments. The CCAS is a polarization shearing interferometer with HeNe and diode laser sources that illuminate the HET primary mirror with polarized coherent light. Returns from each mirror segment focus back at the CoC and can be viewed on a faceplate at the front of the instrument for coarse alignment of the primary mirror, or sent into the interferometer for fine alignment. Inside the interferometer, Wollaston prisms separate the HET primary mirror image into two polarization components which are spatially shifted by the distance of one mirror segment. This overlaps images of segments with their neighbors to generate interference fringes. The beam is then split into 4 legs, each of which introduces phase shifts to the polarization. Fringe patterns shifted by 0, 90, 180, and 270 degrees are recorded on each leg by a CCD camera. The intensity in each pixel is measured and used in the standard 4-bucket algorithm to calculate the relative phase shift between the two mirror segments, and thus their tip/tilt misalignment. Segment piston is determined from the location of the peak in the fringe contrast function, using all four camera images and light at four laser diode wavelengths. Although the CCAS has recently been replaced with a Shack-Hartmann sensor for mirror alignment on the HET, its operation and performance are described. Under less environmentally challenging conditions, such as laboratory or space-based applications, this instrument could be used for aligning segmented mirrors to high precision.
机译:曲率对准传感器(CCAS)的中心为安装在曲率(COC)塔对业余爱好-埃伯利望远镜(HET)的中心对准的91个主反射镜部分的原始仪器。所述CCAS是偏振剪切干涉仪与该照明用偏振相干光的HET主镜氦氖和二极管激光源。从在大会每个反射镜段焦点回到返回,并且可以在一个面板在仪器的前部的主反射镜的粗对准观看,或发送到干涉仪的精细对准。所述干涉仪内,沃拉斯顿棱镜的HET主镜图像分离成在空间上由一个反射镜区段的距离移位两个偏振分量。这种重叠部分的图像与邻居产生干涉条纹。然后该光束被分成4周的腿,其中的每一个引入的相移,以偏振。条纹图案移0,90,180,和270度被记录在由CCD照相机每个腿。在每个像素的强度被测量并且在标准的4桶算法来计算两个镜像段之间的相对相移,因此它们的端头/倾斜失准。段活塞从在条纹对比度函数的峰值的位置来确定,使用所有四个摄像机图像和光中的四个激光二极管的波长。虽然CCAS最近被替换为夏克哈特曼传感器用于在HET镜对准,其操作和性能进行描述。下少对环境挑战性的条件,如实验室或基于空间的应用中,该仪器可用于对准分段反射镜高精度。

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