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Realization of high-luminous-efficiency InGaN light-emitting diodes in the green gap range

机译:在绿色间隙范围内实现高发光效率的InGaN发光二极管

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摘要

Light-emitting diodes (LEDs) in the wavelength region of 535–570 nm are still inefficient, which is known as the “green gap” problem. Light in this range causes maximum luminous sensation in the human eye and is therefore advantageous for many potential uses. Here, we demonstrate a high-brightness InGaN LED with a normal voltage in the “green gap” range based on hybrid multi-quantum wells (MQWs). A yellow-green LED device is successfully fabricated and has a dominant wavelength, light output power, luminous efficiency and forward voltage of 560 nm, 2.14 mW, 19.58 lm/W and 3.39 V, respectively. To investigate the light emitting mechanism, a comparative analysis of the hybrid MQW LED and a conventional LED is conducted. The results show a 2.4-fold enhancement of the 540-nm light output power at a 20-mA injection current by the new structure due to the stronger localization effect, and such enhancement becomes larger at longer wavelengths. Our experimental data suggest that the hybrid MQW structure can effectively push the efficient InGaN LED emission toward longer wavelengths, connecting to the lower limit of the AlGaInP LEDs’ spectral range, thus enabling completion of the LED product line covering the entire visible spectrum with sufficient luminous efficacy.
机译:波长在535-570nm之间的发光二极管(LED)仍然效率低下,这就是所谓的“绿隙”问题。该范围内的光在人眼中引起最大的发光感觉,因此对于许多潜在用途是有利的。在这里,我们演示了一种基于混合多量子阱(MQW)且正常电压在“绿色间隙”范围内的高亮度InGaN LED。一种成功制造的黄绿色LED器件,其主波长,光输出功率,发光效率和正向电压分别为560 nm,2.14 mW,19.58 lm / W和3.39V。为了研究发光机理,对混合MQW LED和常规LED进行了比较分析。结果表明,由于具有更强的定位效应,通过新结构,在20 mA注入电流下,540 nm的光输出功率提高了2.4倍,并且这种增强在更长的波长下变得更大。我们的实验数据表明,混合MQW结构可以有效地将有效的InGaN LED发射推向更长的波长,并连接到AlGaInP LED光谱范围的下限,从而使LED产品线能够完整覆盖整个可见光谱并具有足够的发光度。功效。

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