Lossless Complex-Valued Optical-Field Control with Compound Metaoptics

Brian O. Raeker, A. Grbic
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引用次数: 7

Abstract

Forming a desired optical field distribution from a given source requires precise spatial control of a field's amplitude and phase. Low-loss metasurfaces that allow extreme phase and polarization control of optical fields have been demonstrated over the past few years. However, metasurfaces that provide amplitude control have remained lossy, utilizing mechanisms such as reflection, absorption, or polarization loss to control amplitude. Here, we describe the amplitude and phase manipulation of optical fields without loss, by using two lossless phase-only metasurfaces separated by a distance. We first demonstrate a combined beam-former and splitter optical component using this approach. Next, we show a high-quality computer-generated three-dimensional hologram. The proposed metaoptic platform combines the advantage of lossless, complex-valued field control with a physically small thickness. This approach could lead to low-profile, three-dimensional holographic displays, compact optical components, and high precision optical tweezers for micro-particle manipulation.
复合元光学的无损复值光场控制
从给定光源形成所需的光场分布需要对场的振幅和相位进行精确的空间控制。在过去的几年里,低损耗的超表面已经被证明可以对光场进行极端的相位和偏振控制。然而,提供幅度控制的超表面仍然是有损耗的,利用反射、吸收或极化损失等机制来控制幅度。在这里,我们描述了光场的振幅和相位操纵无损耗,通过使用两个无损的纯相位超表面相隔一段距离。我们首先用这种方法演示了一个组合成束器和分束器光学元件。接下来,我们展示一个高质量的计算机生成的三维全息图。所提出的元光学平台结合了无损、复杂值场控制和物理厚度小的优点。这种方法可能会导致低姿态,三维全息显示,紧凑的光学元件,以及用于微粒操作的高精度光学镊子。
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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