Composed Effects of Electron-Hole Exchange and Near-Field Interaction in Quantum-Dot-Confined Radiative Dipoles

Author:

Díaz-Ramírez Jaime David1ORCID,Huang Shiang-Yu2,Cheng Bo-Long2,Lo Ping-Yuan2ORCID,Cheng Shun-Jen2ORCID,Ramírez-Gómez Hanz Yecid1ORCID

Affiliation:

1. Grupo de Física Teórica y Computacional & Grupo QUCIT, Escuela de Física, Universidad Pedagógica y Tecnológica de Colombia, Tunja 150003, Colombia

2. Department of Electrophysics, National Yang Ming Chiao Tung University, Hsinchu 300, Taiwan

Abstract

Conservation of polarization is an important requirement for reliable single-photon emitters, which, in turn, are essential building blocks for light-based quantum information processing. In this work, we study the exciton-spin dynamics in a double quantum dot under the combined effects of electron-hole exchange and Förster resonance energy transfer. By means of numerical solutions of the quantum master equation, we simulate the time-dependent spin polarization for two neighboring dots. According to our results, under some conditions, the depolarization caused by the electron-hole exchange may be slowed by the near field-induced interdot energy transfer, suggesting a new mechanism to extend the exciton coherence time. This opens doors to alternative schemes for improved solid-state quantum light sources.

Funder

Sistema General de Regalías de Colombia

Publisher

MDPI AG

Subject

Condensed Matter Physics,Electronic, Optical and Magnetic Materials

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