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- W2488446542 endingPage "480" @default.
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- W2488446542 abstract "At the most fundamental level, the interaction between light and matter is manifested by the emission and absorption of single photons by single quantum emitters. Controlling light--matter interaction is the basis for diverse applications ranging from light technology to quantum--information processing. Many of these applications are nowadays based on photonic nanostructures strongly benefitting from their scalability and integrability. The confinement of light in such nanostructures imposes an inherent link between the local polarization and propagation direction of light. This leads to {em chiral light--matter interaction}, i.e., the emission and absorption of photons depend on the propagation direction and local polarization of light as well as the polarization of the emitter transition. The burgeoning research field of {em chiral quantum optics} offers fundamentally new functionalities and applications both for single emitters and ensembles thereof. For instance, a chiral light--matter interface enables the realization of integrated non--reciprocal single--photon devices and deterministic spin--photon interfaces. Moreover, engineering directional photonic reservoirs opens new avenues for constructing complex quantum circuits and networks, which may be applied to simulate a new class of quantum many--body systems." @default.
- W2488446542 created "2016-08-23" @default.
- W2488446542 creator A5005767738 @default.
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- W2488446542 creator A5054166029 @default.
- W2488446542 creator A5076820512 @default.
- W2488446542 date "2017-01-01" @default.
- W2488446542 modified "2023-10-16" @default.
- W2488446542 title "Chiral quantum optics" @default.
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