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相控望远镜阵列的视场限制。

Field-of-view limitations of phased telescope arrays.

作者信息

Harvey J E, Ftaclas C

出版信息

Appl Opt. 1995 Sep 1;34(25):5787-98. doi: 10.1364/AO.34.005787.

Abstract

The optical performance of imaging phased telescope arrays is degraded by various design, manufacturing, and operational errors. Perhaps the most basic and fundamental of these error sources are the residual aberrations of the optical design chosen for the individual telescopes. We show that third-order field curvature and distortion, which are rather benign aberrations in a conventional telescope, result in relative phase and tilt errors between the individual telescopes making up the array. The field-dependent image degradation caused by these relative phase and tilt errors is then predicted for different subaperture configurations and telescope design parameters. For phased arrays made up of simple two-mirror telescopes, distortion limits the field of view to less than 5 arcmin for small subapertures (D < 0.5 m), and field curvature limits the field of view to less than 1 arcmin for subaperture diameters greater than 2 m. Quantitative parametric results yielding tolerances for residual field curvature as the phased array is scaled up in size are presented graphically. If a 0.5-deg field of view is desired for telescope diameters greater than 2 m, complex telescope configurations are necessary to satisfy the rather tight tolerances on both field curvature and distortion.

摘要

成像相控望远镜阵列的光学性能会因各种设计、制造和操作误差而降低。这些误差源中最基本、最根本的或许就是为各个望远镜所选择的光学设计的残余像差。我们表明,三阶场曲和畸变在传统望远镜中是相当良性的像差,但在构成阵列的各个望远镜之间会导致相对相位和倾斜误差。然后针对不同的子孔径配置和望远镜设计参数,预测由这些相对相位和倾斜误差引起的与视场相关的图像退化。对于由简单双镜望远镜组成的相控阵列,对于小子孔径(D < 0.5米),畸变将视场限制在小于5角分,而对于子孔径直径大于2米的情况,场曲将视场限制在小于1角分。以图形方式给出了随着相控阵列尺寸扩大而产生残余场曲公差的定量参数结果。如果对于直径大于2米的望远镜期望有0.5度的视场,就需要复杂的望远镜配置来满足场曲和畸变方面相当严格的公差要求。

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