2016
DOI: 10.1103/physrevb.93.245421
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Resonance fluorescence spectra from coherently driven quantum dots coupled to slow-light photonic crystal waveguides

Abstract: Using a polaron master equation approach we investigate the resonance fluorescence spectra from coherently driven quantum dots (QDs) coupled to an acoustic phonon bath and a photonic crystal waveguide with a rich local density of photon states (LDOS). Resonance fluorescence spectra from QDs in semiconductor crystals are known to show strong signatures of electron-phonon interactions, but when coupled to a structured photonic reservoir, the QD emission properties are also determined by the frequency dependence … Show more

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Cited by 4 publications
(2 citation statements)
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“…Note also that we are effectively extending the model of Ref. [45] to allow for a time-dependent drive on resonance.…”
Section: System-reservoir Theory Approachmentioning
confidence: 99%
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“…Note also that we are effectively extending the model of Ref. [45] to allow for a time-dependent drive on resonance.…”
Section: System-reservoir Theory Approachmentioning
confidence: 99%
“…We begin with the total Hamiltonian of a twolevel pulse-driven system interacting with a photon and phonon bath, rotating at the exciton frequency [45][46][47]:…”
Section: System-reservoir Theory Approachmentioning
confidence: 99%