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Optical and polarization properties of nonpolar InGaN-based light-emitting diodes grown on micro-rod templates

机译:微棒模板上生长的基于非极性InGaN的发光二极管的光学和偏振特性

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摘要

We have demonstrated non-polar a-plane InGaN multiple-quantum-well (MQW) light-emitting diodes (LEDs) on sapphire, achieved by overgrowing on a micro-rod template with substantially improved crystal quality. Photoluminescence measurements show one main emission peak at 418 nm along with another weak peak at 448 nm. Wavelength mapping measurements carried out by using a high spatial-resolution confocal PL system indicate that the two emissions origin from different areas associated with the underlying micro-rod patterns. Electroluminescence measurements exhibit a negligible blue-shift of 1.6 nm in the peak wavelength of the main emission when the driving current increases from 10 to 100 mA, indicating that the quantum confined Stark effect is effectively suppressed in in the nonpolar LED. A polarization ratio of 0.49 is obtained for the low-energy emission (~448 nm), while the main emission (~418 nm) shows a polarization ratio of 0.34. Furthermore, the polarization ratios are independent of injection current, while the energy separation between m-polarized and c-polarized lights increases with the injection current for both emissions.
机译:我们已经证明了蓝宝石上的非极性a平面InGaN多量子阱(MQW)发光二极管(LED),该方法通过在具有显着改善的晶体质量的微棒模板上过度生长来实现。光致发光测量显示在418 nm处有一个主发射峰,在448 nm处又有一个弱发射峰。通过使用高空间分辨率共聚焦PL系统进行的波长映射测量表明,这两种发射来自与基础微棒图案相关的不同区域。当驱动电流从10mA增加到100mA时,电致发光测量的主发射峰波长蓝移几乎可以忽略不计1.6µnm,这表明在非极性LED中有效地抑制了量子限制的Stark效应。低能量发射(〜448 nm)的偏振比为0.49,而主发射(〜418 nm)的偏振比为0.34。此外,偏振比与注入电流无关,而对于两种发射,m偏振光和c偏振光之间的能量间隔都随注入电流而增加。

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