论文标题

verner的光学阶段阵列用于螺旋叶抑制和扩展FOV

Verniered Optical Phased Arrays for Grating Lobe Suppression and Extended FOV

论文作者

Dostart, Nathan, Zhang, Bohan, Brand, Michael, Feldkhun, Daniel, Popović, Miloš, Wagner, Kelvin

论文摘要

到目前为止,在2D中使用横梁步态的光学分阶段阵列(OPA)无法以$λ/2 $间距打包发射元素,从而导致lobing裂片限制了视野,引入信号歧义并降低光学效率。 Vernier方案使用配对的发射器和接收器阶段阵列不同的周期性,故意将传输和接收模式错过,以便只能检测到单个配对的发射/接收裂片允许检测信号。一对旨在利用这种效果的OPA,从而有效地抑制了光栅裂片的影响并恢复系统的视野,避免潜在的歧义并减少过量的噪音。在这里,我们通过任意相位控制分析评估游标方案,以找到最佳配置,并阐明游标方案可以恢复整个视野的方式。我们介绍了Vernier方案的第一个实验实现,并使用一对2D波长的OPA证明了lobing裂片抑制。这些结果提出了解决Grating Lobes普遍存在的问题的前进途径,从而大大减轻了对密集的发射极的需求。

Optical phased arrays (OPAs) which beam-steer in 2D have so far been unable to pack emitting elements at $λ/2$ spacing, leading to grating lobes which limit the field-of-view, introduce signal ambiguity, and reduce optical efficiency. Vernier schemes, which use paired transmitter and receiver phased arrays with different periodicity, deliberately misalign the transmission and receive patterns so that only a single pairing of transmit/receive lobes permit a signal to be detected. A pair of OPAs designed to exploit this effect thereby effectively suppress the effects of grating lobes and recover the system's field-of-view, avoid potential ambiguities, and reduce excess noise. Here we analytically evaluate Vernier schemes with arbitrary phase control to find optimal configurations, as well as elucidate the manner in which a Vernier scheme can recover the full field-of-view. We present the first experimental implementation of a Vernier scheme and demonstrate grating lobe suppression using a pair of 2D wavelength-steered OPAs. These results present a route forward for addressing the pervasive issue of grating lobes, significantly alleviating the need for dense emitter pitches.

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