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Accurate methods for study of light emission from quantum wells confined in a microcavity

机译:研究局限于微腔中的量子阱的光发射的准确方法

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摘要

Photomodulated reflectance (PR) and conventional reflectance studies have been performed on an InGaP/AlGaInP/Al/sub x1/Ga/sub y1/As/Al/sub x2/Ga/sub y2/As resonant-cavity light emitting diode structure in the red spectral region. The PR spectra show prominent signals from the Fabry-Perot cavity mode and the quantum-well (QW) ground state excitonic transition. This high-precision technique, and its variations as functions of incidence angle and temperature, as reported in this article, allow one to investigate light emission from the QW confined in a microcavity with relation to the Fabry-Perot mode, and is the only known nonconductive, nondestructive method of doing so.
机译:已经对InGaP / AlGaInP / Al / sub x1 / Ga / sub y1 / As / Al / sub x2 / Ga / sub y2 / As谐振腔发光二极管结构中的光调制反射率(PR)和常规反射率进行了研究。红色光谱区。 PR谱显示了来自Fabry-Perot腔模和量子阱(QW)基态激子跃迁的突出信号。如本文所述,这种高精度技术及其随入射角和温度变化的变化,使人们能够研究相对于法布里-珀罗模式而言,在微腔中封闭的量子阱的发光。非导电,非破坏性的方法。

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