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Holography-based wavefront sensing

机译:基于全息的波前感测

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We describe a modal wavefront sensing technique of using multiplexed holographic optical elements (HOEs). The phase pattern of a set of aberrations is angle multiplexed in a HOE, and the correlated information is obtained with a position sensing detector. The recorded aberration pattern is based on an orthogonal basis set, the Zernike polynomials, and a spherical reference wave. We show that only two recorded holographic patterns for any particular aberration type are sufficient to allow interpolated readout of aberrations to lambda/50. In this paper, we demonstrate the capability of detecting errors between +-2lambda PV for each orthogonal set at rates limited only by the speeds of the detection electronics, which could be up to 1 MHz. We show how we take advantage of the unavoidable intermodal and intramodal cross talks in determining the type, amplitude, and orientation of the wavefront aberrations.
机译:我们描述了一种使用复用全息光学元件(HOEs)的模态波前传感技术。一组像差的相位模式在HOE中进行角度多路复用,并使用位置感应检测器获得相关信息。记录的像差图案基于正交基集,Zernike多项式和球面参考波。我们显示,对于任何特定像差类型,只有两个记录的全息图样足以允许将像差的插值读出至λ/ 50。在本文中,我们展示了对于每个正交集检测+-2λPV之间的错误的能力,速率仅受检测电子设备的速度限制,该速度可能高达1 MHz。我们展示了如何在确定波前像差的类型,幅度和方向时利用不可避免的峰间和峰间串扰。

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