Electric field induced tuning of electronic correlation in weakly confining quantum dots
Huiying Huang, Diana Csontosová, Santanu Manna, Yongheng Huo, Rinaldo Trotta, Armando Rastelli, Petr Klenovský
Johannes Kepler University of Linz Masaryk University Český metrologický institut University of Science and Technology of China
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摘要与影响
We conduct a combined experimental and theoretical study of the quantum confined Stark effect in GaAs/AlGaAs quantum dots obtained with the local droplet etching method. In the experiment, we probe the permanent electric dipole and polarizability of neutral and positively charged excitons weakly confined in GaAs quantum dots by measuring their light emission under the influence of a variable electric field applied along the growth direction. Calculations based on the configuration-interaction method show excellent quantitative agreement with the experiment and allow us to elucidate the role of Coulomb interactions among the confined particles and---even more importantly---of electronic correlation effects on the Stark shifts. Moreover, we show how the electric field alters properties such as built-in dipole, binding energy, and heavy-light hole mixing of multiparticle complexes in weakly confining systems, underlining the deficiencies of commonly used models for the quantum confined Stark effect.
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物理Semiconductor Quantum Structures and Devices
Quantum and electron transport phenomena · Quantum Dots Synthesis And Properties
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