光学
波带板
叠加原理
基点
栅栏
镜头(地质)
焦距
菲涅耳区
相(物质)
菲涅耳透镜
物理
横截面
菲涅耳数
空间光调制器
衍射
工程类
结构工程
量子力学
作者
Shima Gharbi Ghebjagh,David G. Fischer,Stefan Sinzinger
出处
期刊:Applied Optics
[The Optical Society]
日期:2019-11-08
卷期号:58 (32): 8943-8943
被引量:20
摘要
We demonstrate a method for creating a three-dimensional (3D) array of focal spots by combination of a multi-focal diffractive lens and a two-dimensional multi-value phase grating. The multi-focal Fresnel-based lens is created by means of encoding special nonlinearities into the phase structure of a Fresnel zone plate and is represented as a mathematical superposition of this phase function with a refractive lens. The imposed nonlinearity type enables the creation of multiple focal spots with uniform intensity along the optical axis. We demonstrate the example of a 3D multi-value phase grating, which creates five focal planes with a $5 \times 5$5×5 transverse array of focal spots with equal energy distribution in each plane. Experimental results are included to verify the theoretical outcomes, where the phase pattern of a 3D multi-value phase grating is encoded onto a spatial light modulator.
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