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Two-photon Interference from Remote Deterministic Quantum Dot Microlenses

Applied physics letters(2017)

引用 26|浏览16
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摘要
We report on two-photon interference (TPI) experiments using remote deterministic single-photon sources. Employing 3D in-situ electron-beam lithography, we fabricate quantum-light sources at specific target wavelengths by integrating pre-selected semiconductor quantum dots within monolithic microlenses. The individual single-photon sources show TPI visibilities of 49% and 22%, respectively, under pulsed p-shell excitation at 80 MHz. For the mutual TPI of the remote sources, we observe an uncorrected visibility of 29%, in quantitative agreement with the pure dephasing of the individual sources. Due to its efficient photon extraction within a broad spectral range (>20 nm), our microlens-based approach is predestinated for future entanglement swapping experiments utilizing entangled photon pairs emitted by distant biexciton-exciton radiative cascades.
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关键词
quantum dot microlenses,spatially separated QD-based single photon sources,entanglement swapping,high-Q microcavities,biexciton-exciton radiative cascade,polarization entangled photon pairs,advanced quantum communication schemes,photon extraction,single photons,spatially separated quantum light sources,photonic quantum information networks,two-photon interference
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