Orthonormalization of phase-only basis functions

Daniël W. S. Cox, Ivo M. Vellekoop
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Abstract

Orthonormal bases serve as a powerful mathematical tool in theoretical and experimental optics. However, producing arbitrary optical fields in real-world experiments is limited by the hardware, which in many cases involves a phase-only spatial light modulator. Since most basis functions also have a varying amplitude component, they cannot be represented truthfully. We present a general method to construct an orthonormal phase-only basis, optionally possessing desirable properties like smoothness and symmetry. We demonstrate the practical benefit of our approach in a wavefront shaping experiment, achieving a factor 1.5 increase in performance over a non-orthonormal phase only basis.
纯相位基函数的正则化
正交基是理论光学和实验光学的强大数学工具。然而,在现实世界的实验中产生任意光场受到硬件的限制,在许多情况下只涉及相位空间光调制器。由于大多数基函数也有不同的振幅分量,因此无法如实表示。我们提出了一种构建正交纯相基的通用方法,该方法可选择具有平滑性和对称性等理想特性。我们在波前整形实验中展示了这种方法的实际优势,与非正交纯相位基相比,性能提高了 1.5 倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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