Abstract
Strong confinement, in all dimensions, and high mechanical frequencies are highly desirable for quantum optomechanical applications. We show that GaAs/AlAs micropillar cavities fully confine not only photons but also extremely high frequency (19-95 GHz) acoustic phonons. A strong increase of the optomechanical coupling upon reducing the pillar size is observed, together with record room-temperature Q-frequency products of 1014. These mechanical resonators can integrate quantum emitters or polariton condensates, opening exciting perspectives at the interface with nonlinear and quantum optics.
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CITATION STYLE
Anguiano, S., Bruchhausen, A. E., Jusserand, B., Favero, I., Lamberti, F. R., Lanco, L., … Fainstein, A. (2017). Micropillar Resonators for Optomechanics in the Extremely High 19-95-GHz Frequency Range. Physical Review Letters, 118(26). https://doi.org/10.1103/PhysRevLett.118.263901
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