论文标题

混乱的微磅无惯性平行范围

Chaotic microcomb inertia-free parallel ranging

论文作者

Lukashchuk, Anton, Riemensberger, Johann, Stroganov, Anton, Navickaite, Gabriele, Kippenberg, Tobias J.

论文摘要

在增强现实,自动驾驶和机器人技术领域的像素获取率越来越不断增长,对固态束扫描的兴趣增加了,而无需运动部位。现代光子集成激光范围朝着被动梁转向解决方案的进步。最近,基于焦平面阵列,纳米光元额叶和光学阶段阵列的成像仪可实现前所未有的像素分辨率和测量速度。但是,在商业飞机传感器中成功实施的> 100个激光器和检测器的并行化并未被广泛用于被动扫描方法。在这里,我们用微孔子频率梳显示了无惯性和平行的光检测和范围(LIDAR)。我们使用了40个独立的通道,该通道连续扫描,在混乱状态下运行的连续扫描微孔子频率梳与光学色散元件结合使用,以使用2D无源光束转向进行随机调制刺激。

Ever growing pixel acquisition rates in the fields of augmented reality, autonomous driving and robotics have increased interest in solid state beam scanning without moving parts. Modern photonic integrated laser ranging advances towards passive beam steering solutions. Recently demonstrated imagers based on focal plane arrays, nanophotonic metasurfaces, and optical phased arrays enable unprecedented pixel resolution and measurement speed. However, parallelization of >100 lasers and detectors - successfully implemented in commercial time-of-flight sensors - has not been widely adopted for passive scanning approaches. Here, we show both inertia-free and parallel light detection and ranging (LiDAR) with microresonator frequency combs. We used 40 independent channels of a continuously scanned microresonator frequency comb operated in the chaotic regime in combination with optical dispersive elements to perform random modulation LiDAR with 2D passive beam steering.

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