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Spatially addressable design of gradient index structures through spatial light modulator based holographic lithography

机译:通过基于空间光调制器的全息光刻技术实现梯度指数结构的空间可寻址设计

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In this paper, we present an achievable gradient refractive index in bi-continuous holographic structures that are formed through five-beam interference. We further present a theoretic approach for the realization of gradient index devices by engineering the phases of the interfering beams with a pixelated spatial light modulator. As an example, the design concept of a gradient index Luneburg lens is verified through full-wave electromagnetic simulations. These five beams with desired phases can be generated through programming gray level super-cells in a diffractive spatial light modulator. As a proof-of-concept, gradient index structures are demonstrated using synthesized and gradient phase patterns displayed in the spatial light modulator.
机译:在本文中,我们提出了通过五光束干涉形成的双连续全息结构中可实现的梯度折射率。我们进一步提出了一种通过用像素化空间光调制器设计干涉光束的相位来实现梯度指数设备的理论方法。例如,通过全波电磁仿真验证了梯度折射率Luneburg透镜的设计概念。可以通过在衍射空间光调制器中对灰度级超级单元进行编程来生成具有所需相位的这五个光束。作为概念验证,使用在空间光调制器中显示的合成相位梯度图案演示了梯度索引结构。

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