Optomechanical coupling in a nanocavity formed between two cantilevers is tuned through renormalization of the nanocavity field, allowing reconfiguration of the dominant optomechanical transduction mechanism and spatially selective optical readout of mechanical resonances. Tuning is mediated through evanescent interaction between the nanocavity and a fiber taper near-field probe that induces both dissipative and dispersive optomechanical coupling. Tunable optomechanical coupling can exceed 3 GHz/nm, and is shown to allow readout of out-of-plane cantilever nanomechanical resonances suitable for sensing applications.Peer reviewed: YesNRC publication: Ye
The field of optomechanics has emerged as leading platform for achieving quantum control of macrosco...
Reconfigurable optical filters are of great importance for applications in optical communication and...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
An optical fiber taper placed in the near field of a "split-beam" photonic crystal nanobeam cavity w...
International audienceIn canonical optomechanical systems, mechanical vibrations are dynamically enc...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Optomechanical transduction has demonstrated its supremacy in probing nanomechanical displacements. ...
Nano-optomechanical sensors enable precision sensing of displacement, force and mass. However, the c...
Nano-optomechanical structures enable displacement and force sensing with ultimate precision, but th...
In an optomechanical setup, the coupling between cavity and resonator can be increased by tuning the...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
We demonstrate here that switching and tuning of a nanocavity resonance can be achieved by approachi...
We have realized a nano-electromechanical hybrid system consisting of a silicon nitride beam dielect...
The field of optomechanics has emerged as leading platform for achieving quantum control of macrosco...
Reconfigurable optical filters are of great importance for applications in optical communication and...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
An optical fiber taper placed in the near field of a "split-beam" photonic crystal nanobeam cavity w...
International audienceIn canonical optomechanical systems, mechanical vibrations are dynamically enc...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Optomechanical transduction has demonstrated its supremacy in probing nanomechanical displacements. ...
Nano-optomechanical sensors enable precision sensing of displacement, force and mass. However, the c...
Nano-optomechanical structures enable displacement and force sensing with ultimate precision, but th...
In an optomechanical setup, the coupling between cavity and resonator can be increased by tuning the...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
We demonstrate here that switching and tuning of a nanocavity resonance can be achieved by approachi...
We have realized a nano-electromechanical hybrid system consisting of a silicon nitride beam dielect...
The field of optomechanics has emerged as leading platform for achieving quantum control of macrosco...
Reconfigurable optical filters are of great importance for applications in optical communication and...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...