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Quantum optical circulator controlled by a single chirally coupled atom

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arxiv 1609.02492 v1 pith:X42T5Y25 submitted 2016-09-08 quant-ph

Quantum optical circulator controlled by a single chirally coupled atom

classification quant-ph
keywords circulatorquantumatomopticaldirectionlightroutingsingle
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We demonstrate a fiber-integrated quantum optical circulator that is operated by a single atom and that relies on the chiral interaction between emitters and transversally confined light. Like its counterparts in classical optics, our circulator exhibits an inherent asymmetry between light propagation in the forward and the backward direction. However, rather than a magnetic field or a temporal modulation, it is the internal quantum state of the atom that controls the operation direction of the circulator. This working principle is compatible with preparing the circulator in a coherent superposition of its operational states. Such a quantum circulator may thus become a key element for routing and processing quantum information in scalable integrated optical circuits. Moreover, it features a strongly nonlinear response at the single-photon level, thereby enabling, e.g., photon number-dependent routing and novel quantum simulation protocols.

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