Dependence of Laminar Flow Fluctuation on Indium Composition in In0.07GaAs/GaAs Quantum Wells for 940-nm Infrared Light-Emitting Diodes

被引:0
作者
Dae-Kwang Kim
Hyung-Joo Lee
Won-Chan An
Hong-Gun Kim
Lee-Ku Kwac
机构
[1] AUK Corporation,CF Technical Division
[2] Jeonju University,Department of Mechanical and Automotive Engineering
来源
Journal of the Korean Physical Society | 2018年 / 72卷
关键词
Infrared; Light-emitting diode; InGaAs;
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学科分类号
摘要
The effect of laminar flow fluctuation on the indium composition of In0.07GaAs quantum wells was investigated in order to obtain a higher output power from infrared lighting-emitting diodes (IR-LEDs) having a 940-nm wavelength. By controlling the injection pressure, we obtained various laminar flow conditions. Through subsequent photoluminescence (PL) and X-ray diffraction (XRD) measurements, a noticeable improvement in the optical and the crystalline characteristics of the In0.07GaAs quantum wells was observed at an optimum laminar flow. This result could be attributed to a reduction of non-crystallization in InGaAs quantum wells that had their indium composition improved via the optimized laminar flow. Overall, a significantly improved output power (11.2 mW) was obtained from a 940-nm IR-LED chip fabricated at an optimum laminar flow of 500 sccm, and a remarkable increase of approximately 250% was displayed compared to a conventional chip (3.9 mW) fabricated at a laminar flow of 100 sccm.
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页码:1020 / 1024
页数:4
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