Paper
1 May 2012 Quantum-dot Mollow triplet in a semiconductor cavity-QED system
C. Roy, S. Hughes
Author Affiliations +
Abstract
We present a semiconductor quantum optics formalism to study the dynamics of a coherently-driven semiconductor quantum dot interacting with an acoustic phonon bath and a high Q microcavity. A quantum master equation is derived in the polaron frame, where multiphoton and multiphoton effects are included to all orders. As applications of the theory, we study the Mollow triplet of a driven quantum dot in the regime of semiconductor cavity-QED. Pronounced signatures of electron-phonon-photon scattering are observed through excitation-induced dephasing and off-resonant cavity coupling. We also present an effective phonon master in Lindblad form and show example quantum trajectory simulations that help one to understand the features in the Mollow triplet spectra.
© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
C. Roy and S. Hughes "Quantum-dot Mollow triplet in a semiconductor cavity-QED system", Proc. SPIE 8424, Nanophotonics IV, 84240D (1 May 2012); https://doi.org/10.1117/12.922483
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KEYWORDS
Phonons

Semiconductors

Excitons

Polarons

Scattering

Luminescence

Quantum dots

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