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- W4386427807 abstract "Quantum non-Gaussianity (QNG) corresponds to an essential resource in many prospective applications of quantum technologies. QNG states of light have been demonstrated in a broad range of experimental platforms with various complementary advantages [1]. However, in order to allow for their direct and efficient utilization for interaction with the target quantum system, their degrees of freedom have to be well-defined and controllable. This imposes a requirement on the generation of QNG light in a single optical mode. While the intrinsic single-photon sources including trapped ions, atoms, or molecules, naturally offer a close-to a single mode emission, their technologically more accessible counterparts including majority of the solid-state emitters and sources based on heralded generation of nonclassical states in various parametric nonlinear processes typically provide a multi-mode output. Although several demonstrations of a single-mode operation of nonclassical light sources based on these platforms have been recently demonstrated, an unambiguous observation of a single-mode QNG light has never been presented." @default.
- W4386427807 created "2023-09-05" @default.
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- W4386427807 date "2023-06-26" @default.
- W4386427807 modified "2023-09-30" @default.
- W4386427807 title "Single-Mode Quantum Non-Gaussian Light from Warm Atoms" @default.
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- W4386427807 doi "https://doi.org/10.1109/cleo/europe-eqec57999.2023.10232670" @default.
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