Self-Induced Oscillation for Electron-Hole Pair Confined in Quantum Dot

Autor: Tomoki Tagawa, Atsushi Tsubaki, Masamu Ishizuki, Kyozaburo Takeda, Jisoon Ihm, Hyeonsik Cheong
Rok vydání: 2011
Předmět:
Zdroj: AIP Conference Proceedings.
ISSN: 0094-243X
DOI: 10.1063/1.3666405
Popis: We study the time‐dependent (TD) phenomena of the electron‐hole or electron‐electron pair confined in the square quantum dot (SQD) system by computationally solving TD Schroedinger equation under the unrestricted Hartree‐Fock (UHF) approach. A typical vacillation is found both in the electron and hole when the charged pair is strongly confined in the SQD while the charged particles have initially the same orbital symmetry. The FFT analysis elucidates that the transition matrix element due to the coulomb interaction involves the eigen frequency ω being equal to the excitation energy when the resonative vacillation appears. Thus, Coulomb potential has a potential to cause the self‐induced “Rabi” oscillation when the charged‐particle pair is confined only in the QD.
Databáze: OpenAIRE