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arxiv: 1501.00898 · v1 · pith:KBYPE7OVnew · submitted 2015-01-05 · 🪐 quant-ph · physics.atom-ph· physics.optics

Two-Color Photon Correlations of the Light Scattered by a Quantum Dot

classification 🪐 quant-ph physics.atom-phphysics.optics
keywords spectrumtwo-photoncorrelationslaserlightphotonquantumscattered
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Two-color second-order correlations of the light scattered near-resonantly by a quantum dot were measured by means of spectrally-filtered coincidence detection. The effects of filter frequency and bandwidth were studied under monochromatic laser excitation, and a complete two-photon spectrum was reconstructed. In contrast to the ordinary one-photon spectrum, the two-photon spectrum is asymmetric with laser detuning and exhibits a rich structure associated with both real and virtual two-photon transitions down the "dressed states" ladder. Photon pairs generated via virtual transitions are found to violate the Cauchy-Schwartz inequality by a factor of 60. Our experiments are well described by the theoretical expressions obtained by del Valle et al. via time-and normally-ordered correlation functions.

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