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Polynomial-based optical true-time delay devices with microelectromechanical mirror arrays

机译:具有微机电镜阵列的基于多项式的光学实时延迟装置

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摘要

We previously reported optical true-time delay devices, based on the White cell, to support phased-array radars. In particular, we demonstrated a quadratic device, in which the number of delays obtainable was proportional to the square of the number of times the light beam bounced in the cell. Here we consider the possibilities when a microelectromechanical (MEM) tip/tilt mirror array with multiple stable states is used. We present and compare designs for quadratic, quartic, and octic cells using MEM mirror arrays with two, three, and five micro-mirror tilt angles. An octic cell with a three-state MEM can produce 6,339 different delays in just 17 bounces.
机译:我们先前曾报道过基于白细胞的光学实时延迟设备,可支持相控阵雷达。尤其是,我们展示了一种二次装置,其中可获得的延迟数与光束在单元中反射的次数的平方成正比。在这里,我们考虑使用具有多个稳定状态的微机电(MEM)尖端/倾斜镜阵列的可能性。我们介绍并比较使用具有两个,三个和五个微镜倾斜角的MEM反射镜阵列的二次,四次和双眼细胞的设计。具有三态MEM的卵细胞可以在仅仅17次反弹中产生6339个不同的延迟。

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