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Dually modulated photonic crystals enabling high-power high-beam-quality two-dimensional beam scanning lasers

机译:双重调制光子晶体,使高功率高光束质量的二维光束扫描激光器

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Mechanical-free, high-power, high-beam-quality two-dimensional (2D) beam scanning lasers are in high demand for various applications including sensing systems for smart mobility, object recognition systems, and adaptive illuminations. Here, we propose and demonstrate the concept of dually modulated photonic crystals to realize such lasers, wherein the positions and sizes of the photonic-crystal lattice points are modulated simultaneously. We show using nano-antenna theory that this photonic nanostructure is essential to realize 2D beam scanning lasers with high output power and high beam quality. We also fabricate an on-chip, circuit-driven array of dually modulated photonic-crystal lasers with a 10?×?10 matrix configuration having 100 resolvable points. Our device enables the scanning of laser beams over a wide range of 2D directions in sequence and in parallel, and can be flexibly designed to meet application-specific demands.
机译:无需机动,高功率,高光束质量的二维(2D)光束扫描激光器对各种应用有很大的需求,包括用于智能移动性,物体识别系统和自适应照明的传感系统。这里,我们提出并展示了双重调制的光子晶体的概念来实现这种激光器,其中光子晶格点的位置和尺寸同时调制。我们以纳米天线理论展示该光子纳米结构对于实现具有高输出功率和高光束质量的2D光束扫描激光至关重要。我们还制造了一种片上的电路驱动阵列的双重调制的光子晶体激光器,其具有10Ω×10矩阵配置,具有100个可分辨点。我们的设备可以通过顺序和并行扫描宽范围的2D方向上的激光束,并且可以灵活地设计以满足特定于应用的需求。

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