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采用衍射微透镜阵列的自适应夏克-哈特曼波前传感器,以减轻闪烁效应。

Adaptable Shack-Hartmann wavefront sensor with diffractive lenslet arrays to mitigate the effects of scintillation.

作者信息

Lechner Daniel, Zepp Andreas, Eichhorn Marc, Gładysz Szymon

出版信息

Opt Express. 2020 Nov 23;28(24):36188-36205. doi: 10.1364/OE.410217.

DOI:10.1364/OE.410217
PMID:33379719
Abstract

Adaptive optics systems are used to compensate for distortions of the wavefront of light induced by turbulence in the atmosphere. Shack-Hartmann wavefront sensors are used to measure this wavefront distortion before correction. However, in turbulence conditions where strong scintillation (intensity fluctuation) is present, these sensors show considerably worse performance. This is partly because the lenslet arrays of the sensor are designed without regard to scintillation and are not adaptable to changes in turbulence strength. Therefore, we have developed an adaptable Shack-Hartmann wavefront sensor that can flexibly exchange its lenslet array by relying on diffractive lenses displayed on a spatial light modulator instead of utilizing a physical microlens array. This paper presents the principle of the sensor, the design of a deterministic turbulence simulation test-bed, and an analysis how different lenslet arrays perform in scintillation conditions. Our experiments with different turbulence conditions showed that it is advantageous to increase the lenslet size when scintillation is present. The residual phase variance for an array with 24 lenslets was up to 71% lower than for a 112 lenslet array. This shows that the measurement error of focal spots has a strong influence on the performance of a Shack-Hartmann wavefront sensor and that in many cases it makes sense to increase the lenslet size. With our adaptable wavefront sensor such changes in lenslet configurations can be done very quickly and flexibly.

摘要

自适应光学系统用于补偿大气湍流引起的光波前畸变。在进行校正之前,使用夏克-哈特曼波前传感器来测量这种波前畸变。然而,在存在强烈闪烁(强度波动)的湍流条件下,这些传感器的性能会显著变差。部分原因是传感器的微透镜阵列在设计时未考虑闪烁情况,并且无法适应湍流强度的变化。因此,我们开发了一种自适应夏克-哈特曼波前传感器,它可以通过依赖空间光调制器上显示的衍射透镜灵活地更换其微透镜阵列,而不是使用物理微透镜阵列。本文介绍了该传感器的原理、确定性湍流模拟试验台的设计,以及分析不同微透镜阵列在闪烁条件下的性能表现。我们在不同湍流条件下进行的实验表明,在存在闪烁时增大微透镜尺寸是有利的。一个具有24个微透镜的阵列的残余相位方差比一个112个微透镜的阵列低达71%。这表明焦斑的测量误差对夏克-哈特曼波前传感器的性能有很大影响,并且在许多情况下增大微透镜尺寸是有意义的。使用我们的自适应波前传感器,可以非常快速灵活地进行微透镜配置的这种改变。

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Opt Express. 2020 Nov 23;28(24):36188-36205. doi: 10.1364/OE.410217.
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