Dynamics of Quantum Dots in Micropillar Cavities: a Quantitative Comparison Between Experiment and Theory for a Solid-state Cavity Quantum Electrodynamics System - Kristian Høeg Madsen - 書籍 - LAP LAMBERT Academic Publishing - 9783845421728 - 2011年9月12日
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Dynamics of Quantum Dots in Micropillar Cavities: a Quantitative Comparison Between Experiment and Theory for a Solid-state Cavity Quantum Electrodynamics System

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発送予定日 年9月14日 - 年9月24日
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In this thesis the interaction between a single quantum dot and a cavity is investigated. Quantum dots embedded in a micropillar cavity are investigated by measuring the spectra, and by performing time-resolved measurements. The enhancement of the spontaneous decay of the quantum dot is measured to 18.9 with a resonant lifetime of 28.1 ps under the assumption of an exponential decay. A model is constructed with measurable parameters, and the calculated decay curves are not exponential. As a result the mean decay rate, which coincides with the exponential rate for an exponential decay, is calculated for the measured rates. A large deviation is seen, with an enhancement of the mean decay rate of 9.1 with a resonant lifetime of 56.5 ps. The non-exponential decay of the quantum dot is caused by non- Markovian processes in the dot-cavity interaction. Furthermore, the second order coherence is measured to determine the quality of the single-photon emission, and two-photon interference measurements are likewise performed. These measurements show an indistinguishability of 48%. Finally, cavity-assisted resonant excitation of a quantum dot with another quantum dot is demonstrated.

メディア 書籍     Paperback Book   (ソフトカバーで背表紙を接着した本)
リリース済み 2011年9月12日
ISBN13 9783845421728
出版社 LAP LAMBERT Academic Publishing
ページ数 92
寸法 150 × 6 × 226 mm   ·   155 g
言語 ドイツ語