Effect of electron blocking layers on the conduction and valence band profiles of InGaN/GaN LEDs
Hammersley, Simon and Daswson, Phil and Kappers, Menno J. and Massabuau, Fabien C.-P. and Frentrup, Martin and Oliver, Rachel A. and Humphreys, Colin J. (2016) Effect of electron blocking layers on the conduction and valence band profiles of InGaN/GaN LEDs. Physica Status Solidi C, 13 (5-6). pp. 262-265. ISSN 1610-1642
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Abstract
In this paper we investigate the effect of including an electron blocking layer between the quantum well active region and the p-type layers of a light emitting diode has on the conduction and valence band profile of a light emitting diode. Two light emitting diode structures with nominally identical quantum well active regions one containing an electron blocking layer and one without were grown for the purposes of this investigation. The conduction and valence band profiles for both structures were then calculated using a commercially available Schrödinger-Poisson calculator, and a modification to the electric field across the QWs observed. The results of these calculations were then compared to photoluminescence and photoluminescence time decay measurements. The modification in electric field across the quantum wells of the structures resulted in slower radiative recombination in the sample containing an electron blocking layers. The sample containing an electron blocking layer was also found to exhibit a lower internal quantum efficiency, which we attribute to the observed slower radiative recombination lifetime making radiative recombination less competitive.
ORCID iDs
Hammersley, Simon, Daswson, Phil, Kappers, Menno J., Massabuau, Fabien C.-P. ORCID: https://orcid.org/0000-0003-1008-1652, Frentrup, Martin, Oliver, Rachel A. and Humphreys, Colin J.;-
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Item type: Article ID code: 79436 Dates: DateEvent17 February 2016Published26 January 2016AcceptedSubjects: Science > Physics Department: Faculty of Science > Physics Depositing user: Pure Administrator Date deposited: 03 Feb 2022 11:08 Last modified: 11 Nov 2024 13:22 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/79436