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通过维特林格流的全息相位恢复:具有辅助幅度的笛卡尔形式

Holographic phase retrieval via Wirtinger flow: Cartesian form with auxiliary amplitude.

作者信息

Uchiyama Ittetsu, Tsutake Chihiro, Takahashi Keita, Fujii Toshiaki

出版信息

Opt Express. 2024 Jun 3;32(12):20600-20617. doi: 10.1364/OE.523855.

Abstract

We propose a new gradient method for holography, where a phase-only hologram is parameterized by not only the phase but also amplitude. The key idea of our approach is the formulation of a phase-only hologram using an auxiliary amplitude. We optimize the parameters using the so-called Wirtinger flow algorithm in the Cartesian domain, which is a gradient method defined on the basis of the Wirtinger calculus. At the early stage of optimization, each element of the hologram exists inside a complex circle, and it can take a large gradient while diverging from the origin. This characteristic contributes to accelerating the gradient descent. Meanwhile, at the final stage of optimization, each element evolves along a complex circle, similar to previous state-of-the-art gradient methods. The experimental results demonstrate that our method outperforms previous methods, primarily due to the optimization of the amplitude.

摘要

我们提出了一种用于全息术的新梯度方法,其中仅相位全息图不仅由相位参数化,还由幅度参数化。我们方法的关键思想是使用辅助幅度来形成仅相位全息图。我们在笛卡尔域中使用所谓的维尔特林格流算法来优化参数,这是一种基于维尔特林格微积分定义的梯度方法。在优化的早期阶段,全息图的每个元素都存在于一个复圆内,并且在从原点发散时可以采取较大的梯度。这一特性有助于加速梯度下降。同时,在优化的最后阶段,每个元素沿着一个复圆演化,类似于先前的先进梯度方法。实验结果表明,我们的方法优于先前的方法,主要是由于幅度的优化。

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