论文标题
超宽带表面正态相干的光学接收器与纳米金属极化器
Ultra-broadband surface-normal coherent optical receiver with nanometallic polarizers
论文作者
论文摘要
可以解释光的高速内部和正交信号的连贯接收器是光通信,互连,成像和计算的重要组成部分。然而,常规的基于波导的相干接收器表现出较大的足迹,难以有效地耦合大量的空间通道,并且受波导基于波导的光学混合动力车施加的操作带宽有限。在这里,我们提出了一个表面正态相干接收器,其基于纳米金属晶粒的极化器直接集成在光电探测器顶部,而无需光学混合电路。使用具有70-μm平方英尺的活性截面的制造设备,我们证明了以各种格式的高速(最多64 Gbaud)相干信号的解调。此外,得益于波长不敏感的纳米金属极化器,显示了从1260 nm到1630 nm的超宽带操作。据我们所知,这是表面正常同源光学接收器的首次演示,可以轻松地将其缩放到紧凑的二维阵列设备上,以接收高度平行的相干信号。
A coherent receiver that can demodulate high-speed in-phase and quadrature signals of light is an essential component for optical communication, interconnects, imaging, and computing. Conventional waveguide-based coherent receivers, however, exhibit large footprints, difficulty in coupling a large number of spatial channels efficiently, and limited operating bandwidth imposed by the waveguide-based optical hybrid. Here, we present a surface-normal coherent receiver with nanometallic-grating-based polarizers integrated directly on top of photodetectors without the need for an optical hybrid circuit. Using a fabricated device with the active section occupying a 70-μm-square footprint, we demonstrate demodulation of high-speed (up to 64 Gbaud) coherent signals in various formats. Moreover, ultra-broadband operation from 1260 nm to 1630 nm is demonstrated, thanks to the wavelength-insensitive nanometallic polarizers. To our knowledge, this is the first demonstration of a surface-normal homodyne optical receiver, which can easily be scaled to a compact two-dimensional arrayed device to receive highly parallelized coherent signals.