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Systematic design of a robust half-W1 photonic crystal waveguide for interfacing slow light and trapped cold atoms

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arxiv 2301.04675 v2 pith:GWGU4HEY submitted 2023-01-11 quant-ph physics.atom-phphysics.optics

Systematic design of a robust half-W1 photonic crystal waveguide for interfacing slow light and trapped cold atoms

classification quant-ph physics.atom-phphysics.optics
keywords atomsatomguidedlightwaveguidecoldcouplingdesign
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Novel platforms interfacing trapped cold atoms and guided light in nanoscale waveguides are a promising route to achieve a regime of strong coupling between light and atoms in single pass, with applications to quantum non-linear optics and quantum simulation. A strong challenge for the experimental development of this emerging waveguide-QED field of research is to combine facilitated optical access for atom transport, atom trapping via guided modes and robustness to inherent nanofabrication imperfections. In this endeavor, here we propose to interface Rubidium atoms with a photonic-crystal waveguide based on a large-index GaInP slab. With a specifically tailored half-W1 design, we show that a large chiral coupling to the waveguide can be obtained and guided modes can be used to form two-color dipole traps for atoms at 116~nm from the edge of the structure. This optimized device should greatly improve the level of experimental control and facilitate the atom integration.

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