| Literature DB >> 27088347 |
Xin Huang1, Chunhua Du1, Yongli Zhou1, Chunyan Jiang1, Xiong Pu1, Wei Liu1, Weiguo Hu1, Hong Chen2, Zhong Lin Wang1,3.
Abstract
With enhancements in the performance of optoelectronic devices, the field of piezo-phototronics has attracted much attention, and several theoretical works have been reported based on semiclassical models. At present, the feature size of optoelectronic devices are rapidly shrinking toward several tens of nanometers, which results in the quantum confinement effect. Starting from the basic piezoelectricity equation, Schrödinger equation, Poisson equation, and Fermi's golden rule, a self-consistent theoretical model is proposed to study the piezo-phototronic effect in the framework of perturbation theory in quantum mechanics. The validity and universality of this model are well-proven with photoluminescence measurements in a single GaN/InGaN quantum well and multiple GaN/InGaN quantum wells. This study provides important insight into the working principle of nanoscale piezo-phototronic devices as well as guidance for the future device design.Keywords: perturbation theory; photoluminescence measurements; piezo-phototronic; quantum effect; self-consistent calculation
Year: 2016 PMID: 27088347 DOI: 10.1021/acsnano.6b00417
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881