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Chiral Quantum-Optical Elements for Waveguide-QED with Sub-wavelength Rydberg-Atom Arrays

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arxiv 2407.01133 v1 pith:JTCDRI4O submitted 2024-07-01 quant-ph

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keywords opticalelementsnonlinearquantumachieveadditionalapproacharray
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abstract

We describe an approach to achieve near-perfect unidirectional light-matter coupling to an effective quantum emitter that is formed by a subwavelength array of atoms in the Rydberg-blockade regime. The nonlinear reflection and transmission of such two-dimensional superatoms are exploited in different interferometric setups for the deterministic generation of tunable single photons and entangling two-photon operations with high fidelities, $\mathcal{F}\gtrsim0.999$. The described setup can function as a versatile nonlinear optical element in a free-space photonic quantum network with simple linear elements and without the need of additional mode confinement, optical resonators, or optical isolators.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Towards a fictitious magnetic field trap for both ground and Rydberg state $^{87}$Rb atoms via the evanescent field of an optical nanofibre

    physics.atom-ph 2025-07 conditional novelty 6.0 of 10

    A fictitious-magnetic-field nanofibre trap is designed to confine both the 5S1/2 ground and 68G9/2 Rydberg states of 87Rb with comparable depths using two guided light wavelengths.

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