arXiv · 1512.00078
Mechanically mediated microwave frequency conversion in the quantum regime
Abstract
We report the observation of efficient and low-noise frequency conversion between two microwave modes, mediated by the motion of a mechanical resonator subjected to radiation pressure. We achieve coherent conversion of more than $10^{12}~\mathrm{photons/s}$ with a $95\mathrm{\%}$ efficiency and a $14~\mathrm{kHz}$ bandwidth. With less than $10^{-1}~\mathrm{photons \cdot s^{-1}\cdot Hz^{-1}}$ of added noise, this optomechanical frequency converter is suitable for quantum state transduction. We show the ability to operate this converter as a tunable beam splitter, with direct applications for photon routing and communication through complex quantum networks.
Explore related subjects
Keep this discovery
F. Lecocq, J. B. Clark, R. W. Simmonds, J. Aumentado, J. D. Teufel. 2015-11-30. Mechanically mediated microwave frequency conversion in the quantum regime. https://doi.org/10.1103/physrevlett.116.043601
Cite the original work for its findings. Save a collection to share your selection of sources.