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在同轴相移记录几何结构中使用数字全息术进行深度湍流波前传感,并与自参考干涉仪进行比较。

Deep-turbulence wavefront sensing using digital holography in the on-axis phase shifting recording geometry with comparisons to the self-referencing interferometer.

作者信息

Thornton Douglas E, Spencer Mark F, Perram Glen P

出版信息

Appl Opt. 2019 Feb 10;58(5):A179-A189. doi: 10.1364/AO.58.00A179.

Abstract

In this paper, we study the use of digital holography in the on-axis phase-shifting recording geometry for the purposes of deep-turbulence wavefront sensing. In particular, we develop closed-form expressions for the field-estimated Strehl ratio and signal-to-noise ratio for three separate phase-shifting strategies-the four-, three-, and two-step methods. These closed-form expressions compare favorably with our detailed wave-optics simulations, which propagate a point-source beacon through deep-turbulence conditions, model digital holography with noise, and calculate the Monte Carlo averages associated with increasing turbulence strengths and decreasing focal-plane array sampling. Overall, the results show the four-step method is the most efficient phase-shifting strategy and deep-turbulence conditions only degrade performance with respect to insufficient focal-plane array sampling and low signal-to-noise ratios. The results also show the strong reference beam from the local oscillator provided by digital holography greatly improves performance by tens of decibels when compared with the self-referencing interferometer.

摘要

在本文中,我们研究了数字全息术在同轴相移记录几何结构中的应用,用于深度湍流波前传感。特别是,我们针对三种不同的相移策略——四步、三步和两步法,推导出了场估计斯特列尔比和信噪比的闭式表达式。这些闭式表达式与我们详细的波动光学模拟结果相比具有优势,该模拟通过深度湍流条件传播点源信标、对有噪声的数字全息术进行建模,并计算与增加湍流强度和降低焦平面阵列采样相关的蒙特卡罗平均值。总体而言,结果表明四步法是最有效的相移策略,并且深度湍流条件仅在焦平面阵列采样不足和信噪比低的情况下才会降低性能。结果还表明,与自参考干涉仪相比,数字全息术提供的来自本地振荡器的强参考光束可将性能大幅提高数十分贝。

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