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Fizika i Tekhnika Poluprovodnikov, 2017 Volume 51, Issue 2, Pages 240–246 (Mi phts6240)

This article is cited in 3 papers

Semiconductor physics

On the effect of ballistic overflow on the temperature dependence of the quantum efficiency of InGaN/GaN multiple quantum well light-emitting diodes

I. A. Prudaev, V. V. Kopyev, I. S. Romanov, V. L. Oleynik

Tomsk State University

Abstract: The dependences of the quantum efficiency of InGaN/GaN multiple quantum well light-emitting diodes on the temperature and excitation level are studied. The experiment is performed for two luminescence excitation modes. A comparison of the results obtained during photo- and electroluminescence shows an additional (to the loss associated with Auger recombination) low-temperature loss in the high-density current region. This causes inversion of the temperature dependence of the quantum efficiency at temperatures lower than 220–300 K. Analysis shows that the loss is associated with electron leakage from the light-emitting-diode active region. The experimental data are explained using the ballistic-overflow model. The simulation results are in qualitative agreement with the experimental dependences of the quantum efficiency on temperature and current density.

Received: 29.03.2016
Accepted: 07.04.2016

DOI: 10.21883/FTP.2017.02.44112.8251


 English version:
Semiconductors, 2017, 51:2, 232–238

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