Interactive Study of Electroreflectance and Photocurrent Spectra in InGaN/GaN-Based Blue LEDs

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초록

We experimentally and theoretically investigate the relationship between the electroreflectance (ER) and photocurrent (PC) spectra, and how they can be utilized to estimate the flat-band voltage and the bandgap energy of the InGaN/GaN-based quantum-well (QW) structure in blue lighte-mitting diodes. With theoretical modeling of ER and PC spectra, we calculate the changes in both the refractive index (Delta n) and optical absorption (Delta alpha) spectra from experimental ER and PC data by using the Kramers-Kronig relation. Then, we compare Delta n (or Delta alpha) spectra obtained differently from the ER and PC data and try to comprehend their physical meanings interactively. From these combined studies, we propose an exact method of determining the flat-band voltage, the piezoelectric field, the emission energy, the effective bandgap energy, and the Stokes shift of a QW structure under the quantum-confined Stark effect (QCSE).

키워드

Light-emitting diodeselectroreflectancephotocurrentabsorptionflat-band voltagepiezoelectric fieldREFRACTIVE-INDEXQUANTUM-WELLSEXCITON LOCALIZATIONPOLARIZATIONFIELDSLUMINESCENCE
제목
Interactive Study of Electroreflectance and Photocurrent Spectra in InGaN/GaN-Based Blue LEDs
저자
Islam, Abu Bashar Mohammad HamidulShin, Dong-SooShim, Jong-In
DOI
10.1109/JQE.2017.2740425
발행일
2017-10
유형
Article
저널명
IEEE Journal of Quantum Electronics
53
5
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1 ~ 6