Transporting and coupling single atoms to a nanophotonic whispering-gallery-mode resonator
ORAL
Abstract
Interfacing cold atoms with nanophotonic waveguides and resonators promises stronger atom-light interactions and may leads to new applications for quantum optics. In this talk, we discuss successful realization for large cooperative coupling of single atoms to a nanophotonic whispering-gallery-mode resonator using two different atom trapping and delivery methods. The first one is an optical guiding technique that makes use of diffracted light from a nanophotonic waveguide to direct cold atoms to the evanescent region of the resonator. The second one is an optical conveyor-belt consisting of a moving optical lattice for controlled delivery of trapped atoms. Our demonstration may enable new applications with scalable light-matter interface based on cold atoms coupled to nanophotonic circuits.
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Publication: Xinchao Zhou, Hikaru Tamura, Tzu-Han Chang, Chen-Lung Hung, arXiv:2111.01119 (2021).
Presenters
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Xinchao Zhou
Purdue University
Authors
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Xinchao Zhou
Purdue University
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Tzu-Han Chang
Purdue University
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Hikaru Tamura
Purdue University
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Chen-Lung Hung
Purdue University