A bilayer system of dipolar atoms on a 50 nm scale
ORAL
Abstract
We implement a new super-resolution technique which arranges magnetic atoms on a sub-50 nm scale --- a scale on which the interatomic dipole-dipole interaction is greatly enhanced. We demonstrate the technique by creating a bilayer system of ultracold dysprosium atoms with tunable interlayer distances. The dipolar interaction between the two layers is observed via the interlayer sympathic cooling and the coupled collective excitations. This technique can be generalized to optical tweezers, and should enable quantum gates driven by magnetic dipole-dipole interactions.
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Publication: Atomic physics on a 50 nm scale: Realization of a bilayer system of dipolar atoms (under preparation)
Presenters
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Li Du
Massachusetts Institute of Technology MIT
Authors
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Li Du
Massachusetts Institute of Technology MIT
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Pierre Barral
Massachusetts Institute of Technology MIT
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Michael Cantara
Massachusetts Institute of Technology
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Julius de Hond
Massachusetts Institute of Technology
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Wolfgang Ketterle
Massachusetts Institute of Technology MIT