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首页> 外文期刊>IEEE Photonics Technology Letters >High Bandwidth GaN-Based Micro-LEDs for Multi-Gb/s Visible Light Communications
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High Bandwidth GaN-Based Micro-LEDs for Multi-Gb/s Visible Light Communications

机译:用于多Gb / s可见光通信的高带宽基于GaN的微型LED

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摘要

Gallium-nitride (GaN)-based light-emitting diodes (LEDs) are highly efficient sources for general purpose illumination. Visible light communications (VLC) uses these sources to supplement existing wireless communications by offering a large, licence-free region of optical spectrum. Here, we report on progress in the development of micro-scale GaN LEDs (micro-LEDs), optimized for VLC. These blue-emitting micro-LEDs are shown to have very high electrical-to-optical modulation bandwidths, exceeding 800 MHz. The data transmission capabilities of the micro-LEDs are illustrated by demonstrations using ON-OFF-keying, pulse-amplitude modulation, and orthogonal frequency division multiplexing modulation schemes to transmit data over free space at the rates of 1.7, 3.4, and 5 Gb/s, respectively.
机译:基于氮化镓(GaN)的发光二极管(LED)是通用照明的高效光源。可见光通信(VLC)使用这些源通过提供较大的无牌照光谱区域来补充现有的无线通信。在这里,我们报告针对VLC优化的微型GaN LED(微型LED)的开发进展。这些发蓝光的微型LED显示具有非常高的电光调制带宽,超过800 MHz。通过使用开-关键控,脉冲幅度调制和正交频分复用调制方案以1.7、3.4和5 Gb / s的速率在自由空间上传输数据的演示,演示了微型LED的数据传输能力。分别。

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