双正交边缘波前传感器的模态灵敏度和动态范围调谐。

Applied optics Pub Date : 2025-08-20 DOI:10.1364/AO.570665
Richard M Clare
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引用次数: 0

摘要

双正交边缘波前传感器(WFS)是一种基于福柯刀口试验的新型波前传感器。在本文中,我们通过计算傅里叶模式空间频率的灵敏度表明,对于低阶(梯度)和高阶(希尔伯特)模式,双正交边缘WFS比金字塔、屋顶、3面和锥形WFS具有更高的光子和读取噪声灵敏度。我们建议在双正交边缘WFS的振幅掩模的过渡区域使用其他(非线性)透射率函数,并表明这可以用来增加灵敏度或低阶模式的动态范围。我们证明了在湍流条件下,通过使用非线性s型函数与线性透射率曲线相比,闭环Strehl的相对改善高达8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modal sensitivity and dynamic range tuning with the bi-orthogonal edge wavefront sensor.

The bi-orthogonal edge wavefront sensor (WFS) is, to our knowledge, a new wavefront sensor based on the Foucault knife-edge test. In this paper, we show by calculating sensitivity with the spatial frequency of Fourier modes that the bi-orthogonal edge WFS has higher photon and read noise sensitivity than the pyramid, roof, 3-sided, and cone WFS for both low-order (gradient) and high-order (Hilbert) modes. We propose the use of other (nonlinear) transmittance functions in the transition region of the amplitude masks of the bi-orthogonal edge WFS and show that this can be used to either increase the sensitivity or the dynamic range of the low-order modes. We demonstrate a relative improvement in closed-loop Strehl of up to 8% in turbulent conditions by using a nonlinear sigmoid function compared to a linear transmittance curve.

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