arXiv · 0801.3604
Characterization of strong light-matter coupling in semiconductor quantum-dot microcavities via photon-statistics spectroscopy
Abstract
It is shown that spectrally resolved photon-statistics measurements of the resonance fluorescence from realistic semiconductor quantum-dot systems allow for high contrast identification of the two-photon strong-coupling states. Using a microscopic theory, the second-rung resonance is analyzed and optimum excitation conditions are determined. The computed photon-statistics spectrum displays gigantic, experimentally robust resonances at the energetic positions of the second-rung emission.
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L. Schneebeli, M. Kira, S. W. Koch. 2008-01-23. Characterization of strong light-matter coupling in semiconductor quantum-dot microcavities via photon-statistics spectroscopy. https://doi.org/10.1103/physrevlett.101.097401
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