Hybrid Quantum Systems with Trapped Charged Particles
ORAL
Abstract
We will review a joint effort by the Ion Storage Group and the Advanced Microwave Photonics Group at NIST (Boulder, CO) to design a hybrid system that interfaces charged particles with macroscopic high-Q resonators. We specifically consider coupling trapped charges to superconducting LC resonators, the mechanical modes of Silicon-Nitride membranes, and piezo-electric materials. We aim to achieve the strong coupling regime, where a single quantum of motion of the trapped charge can be coherently exchanged with harmonic motion of the macroscopic entity (electrical and/or mechanical). These kind of devices could potentially take advantage of both macroscopic control techniques and the long quantum coherence of its trapped charged particles.
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Authors
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Shlomi Kotler
NIST - Boulder
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Dietrich Leibfried
NIST - Boulder
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Raymond Simmonds Simmonds
National Institute of Standards and Technology (NIST), NIST - Boulder, National Institute of Standards and Technology
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Dave Wineland
NIST - Boulder