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Hybrid GaN LED with capillary-bonded II–VI MQW color-converting membrane for visible light communications

机译:具有毛细管粘合II–VI MQW色彩转换膜的混合GaN LED,用于可见光通信

摘要

The rapid emergence of gallium-nitride (GaN) light-emitting diodes (LEDs) for solid-state lighting has created a timely opportunity for optical communications using visible light. One important challenge to address this opportunity is to extend the wavelength coverage of GaN LEDs without compromising their modulation properties. Here, a hybrid source for emission at 540 nm consisting of a 450 nm GaN micro-sized LED (micro-LED) with a micron-thick ZnCdSe/ZnCdMgSe multi-quantum-well color-converting membrane is reported. The membrane is liquid-capillary-bonded directly onto the sapphire window of the micro-LED for full hybridization. At an injection current of 100 mA, the color-converted power was found to be 37 μW. At this same current, the −3 dB optical modulation bandwidth of the bare GaN and hybrid micro-LEDs were 79 and 51 MHz, respectively. The intrinsic bandwidth of the color-converting membrane was found to be power-density independent over the range of the micro-LED operation at 145 MHz, which corresponds to a mean carrier lifetime of 1.9 ns.
机译:用于固态照明的氮化镓(GaN)发光二极管(LED)的迅速出现为使用可见光的光通信创造了及时的机会。应对这一机遇的一项重要挑战是在不影响其调制性能的情况下扩展GaN LED的波长范围。在此,报道了由具有微米级的ZnCdSe / ZnCdMgSe多量子阱颜色转换膜的450nm GaN微型LED(micro-LED)组成的540 nm发射混合光源。该膜直接通过液-毛细管键合到micro-LED的蓝宝石窗口上,以进行完全杂交。在100 mA的注入电流下,发现颜色转换后的功率为37μW。在相同的电流下,裸露的GaN和混合微LED的-3 dB光学调制带宽分别为79 MHz和51 MHz。发现颜色转换膜的固有带宽在145 MHz的微型LED工作范围内与功率密度无关,这相当于1.9 ns的平均载流子寿命。

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