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High-speed modulation of GaN-based light emitting diode with embedded photonic crystals

机译:嵌入式光子晶体的GaN基发光二极管的高速调制

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Using GaN-based light-emitting diodes (LEDs) as a radio source for visible light communication (VLC) is one of alternative choice in a high-speed data system. However, the spontaneous radiative recombination lifetime in the multiple quantum wells (MQWs) usually restrict the modulation bandwidth of LEDs. For LEDs accompanied photonic crystal (PhC) structure, the guided photonic modes can be extracted with a shorter radiative recombination lifetime; therefore, improve the performance of the devices for VLC. In this paper, we compare various PhC structures with corresponding dynamic behaviors in both small- and large-signal modulation. Faster transient responses and higher efficiency of the out-coupled modes were obtained in the room-temperature time-resolved photoluminescence (TRPL) and Raman scattering measurement. Here, sub-GHz modulation of GaN-based PhCLED is demonstrated, and the PhCLED exhibits a higher bandwidth than the conventional LED structure. Our study also indicates that we can not just keep scaling down the masa size of LEDs to increase the operation frequency owing to the light output power may become dull and reduce the performance of VLC system.
机译:在高速数据系统中,将基于GaN的发光二极管(LED)用作可见光通信(VLC)的无线电源是替代选择之一。但是,多量子阱(MQW)中的自发辐射复合寿命通常会限制LED的调制带宽。对于具有光子晶体(PhC)结构的LED,可以以较短的辐射复合寿命提取引导的光子模式。因此,请提高用于VLC的设备的性能。在本文中,我们将各种PhC结构与在小信号和大信号调制中的相应动态行为进行了比较。在室温时间分辨光致发光(TRPL)和拉曼散射测量中获得了更快的瞬态响应和更高的耦合模式效率。在此,说明了GaN基PhCLED的亚GHz调制,并且PhCLED具有比常规LED结构更高的带宽。我们的研究还表明,由于光输出功率可能会变暗并降低VLC系统的性能,我们不能仅仅缩小LED的总体尺寸来增加工作频率。

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