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基于微透镜阵列对焦平面进行细分的波前传感。

Wave-front sensing from subdivision of the focal plane with a lenslet array.

作者信息

Clare Richard M, Lane Richard G

机构信息

University of Canterbury, Christchurch, New Zealand.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2005 Jan;22(1):117-25. doi: 10.1364/josaa.22.000117.

Abstract

A wave-front sensing scheme based on placing a lenslet array at the focal plane of the telescope with each lenslet reimaging the aperture is analyzed. This wave-front sensing arrangement is the dual of the Shack-Hartmann sensor, with the wave front partitioned in the focal plane rather than in the aperture plane. This arrangement can be viewed as the generalization of the pyramid sensor and allows direct comparisons of this sensor with the Shack-Hartmann sensor. We show that, as with the Shack-Hartmann sensor, when subdividing in the focal plane, the quality of the wave-front estimate is a trade-off between the quality of the slope measurements over each region in the aperture and the resolution to which the slope measurements are obtained. Open-loop simulation results demonstrate that the performance of the lenslet array at the focal plane is equivalent to that of the Shack-Hartmann sensor when no modulation is applied to the lenslet array. However, when the array is modulated in a manner akin to that of the pyramid sensor, subdivision at the focal plane provides advantages when compared with the Shack-Hartmann sensor.

摘要

分析了一种波前传感方案,该方案基于在望远镜焦平面放置一个微透镜阵列,每个微透镜对孔径进行重成像。这种波前传感装置是夏克 - 哈特曼传感器的对偶形式,其波前在焦平面而非孔径平面进行划分。这种装置可视为金字塔传感器的推广形式,并允许将该传感器与夏克 - 哈特曼传感器进行直接比较。我们表明,与夏克 - 哈特曼传感器一样,在焦平面进行细分时,波前估计的质量是孔径中每个区域斜率测量质量与获得斜率测量的分辨率之间的权衡。开环仿真结果表明,当不对微透镜阵列施加调制时,焦平面处微透镜阵列的性能与夏克 - 哈特曼传感器相当。然而,当阵列以类似于金字塔传感器的方式进行调制时,与夏克 - 哈特曼传感器相比,在焦平面进行细分具有优势。

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