Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crystal split-beam nanocavity optimized for detecting nanoscale sources of torque. Dissipative coupling of up to approximately 500 MHz/nm and dispersive coupling of 2 GHz/nm enable measurements of sub-pg torsional and cantileverlike mechanical resonances with a thermally limited torque detection sensitivity of 1.2×10^{−20} Nm/sqrt[Hz] in ambient conditions and 1.3×10^{−21} Nm/sqrt[Hz] in low vacuum. Interference between optomechanical coupling mechanisms is observed to enhance detection sensitivity and generate a mechanical-mode-dependent optomechanical wavelength response
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
Nonlinear optomechanical coupling is the basis for many potential future experiments in quantum opto...
Nanophotonic optomechanical devices allow the observation of nanoscale vibrations with a sensitivity...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Photonic crystal split-beam nanocavities are proposed and fabricated for optomechanical detection of...
Optomechanical coupling in a nanocavity formed between two cantilevers is tuned through renormalizat...
This paper reports, for the first time, a novel nanoscale torque sensor in a split ring resonator. T...
Optomechanical transduction has demonstrated its supremacy in probing nanomechanical displacements. ...
International audienceIn canonical optomechanical systems, mechanical vibrations are dynamically enc...
Cavity optomechanical systems with an enhanced coupling between mechanical motion and electromagneti...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
An optical fiber taper placed in the near field of a "split-beam" photonic crystal nanobeam cavity w...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
Nonlinear optomechanical coupling is the basis for many potential future experiments in quantum opto...
Nanophotonic optomechanical devices allow the observation of nanoscale vibrations with a sensitivity...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Photonic crystal split-beam nanocavities are proposed and fabricated for optomechanical detection of...
Optomechanical coupling in a nanocavity formed between two cantilevers is tuned through renormalizat...
This paper reports, for the first time, a novel nanoscale torque sensor in a split ring resonator. T...
Optomechanical transduction has demonstrated its supremacy in probing nanomechanical displacements. ...
International audienceIn canonical optomechanical systems, mechanical vibrations are dynamically enc...
Cavity optomechanical systems with an enhanced coupling between mechanical motion and electromagneti...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
An optical fiber taper placed in the near field of a "split-beam" photonic crystal nanobeam cavity w...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
Nonlinear optomechanical coupling is the basis for many potential future experiments in quantum opto...
Nanophotonic optomechanical devices allow the observation of nanoscale vibrations with a sensitivity...