Light scattering from solid-state quantum emitters : beyond the atomic picture

Coherent scattering of light by a single quantum emitter is a fundamental process at the heart of many proposed quantum technologies. Unlike atomic systems, solid-state emitters couple to their host lattice by phonons. Using a quantum dot in an optical nanocavity, we resolve these interactions in bo...

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Hauptverfasser: Brash, A.J, Iles-Smith, J, Phillips, C.L, McCutcheon, D.P.S, O'Hara, J, Clarke, E, Royall, B, Wilson, L.R, Mørk, J, Skolnick, M.S, Fox, A.M, Nazir, A
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Sprache:eng
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Zusammenfassung:Coherent scattering of light by a single quantum emitter is a fundamental process at the heart of many proposed quantum technologies. Unlike atomic systems, solid-state emitters couple to their host lattice by phonons. Using a quantum dot in an optical nanocavity, we resolve these interactions in both time and frequency domains, going beyond the atomic picture to develop a comprehensive model of light scattering from solid-state emitters. We find that even in the presence of a low-Q cavity with high Purcell enhancement, phonon coupling leads to a sideband that is completely insensitive to excitation conditions and to a nonmonotonic relationship between laser detuning and coherent fraction, both of which are major deviations from atomlike behavior.
DOI:10.1103/PhysRevLett.123.167403