Photonic crystal split-beam nanocavities are proposed and fabricated for optomechanical detection of torsional motion. Large optomechanical transduction around 20 GHz/nm allows for predicted torsional sensitivities down to 10-20 Nm=pHz. \ua9 2013 Optical Society of America.Peer reviewed: YesNRC publication: Ye
We report a nanophotonic sensor where the key functionalities of actuation, sensing and read-out are...
Quantum control of levitated dielectric particles is an emerging subject in quantum optomechanics. A...
Optomechanical coupling in a nanocavity formed between two cantilevers is tuned through renormalizat...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Photonic crystal nanocavities with suspended central elements suitable for optomechanical detection ...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
An optical fiber taper placed in the near field of a "split-beam" photonic crystal nanobeam cavity w...
Nano-optomechanical structures enable displacement and force sensing with ultimate precision, but th...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
In this letter, a torsional optomechanical resonator for torque sensing and torsional mechanical fre...
In recent years, there has been growing interest in optical sensors based on microcavities due to th...
\u3cp\u3eDisplacement sensing at the nanoscale is required in many applications, including accelerom...
We report a nanophotonic sensor where the key functionalities of actuation, sensing and read-out are...
Quantum control of levitated dielectric particles is an emerging subject in quantum optomechanics. A...
Optomechanical coupling in a nanocavity formed between two cantilevers is tuned through renormalizat...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Photonic crystal nanocavities with suspended central elements suitable for optomechanical detection ...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
Dissipative and dispersive optomechanical couplings are experimentally observed in a photonic crysta...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
An optical fiber taper placed in the near field of a "split-beam" photonic crystal nanobeam cavity w...
Nano-optomechanical structures enable displacement and force sensing with ultimate precision, but th...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
We fabricate a novel multimode optomechanical system in a nanoscale photonic crystal platform, capab...
In this letter, a torsional optomechanical resonator for torque sensing and torsional mechanical fre...
In recent years, there has been growing interest in optical sensors based on microcavities due to th...
\u3cp\u3eDisplacement sensing at the nanoscale is required in many applications, including accelerom...
We report a nanophotonic sensor where the key functionalities of actuation, sensing and read-out are...
Quantum control of levitated dielectric particles is an emerging subject in quantum optomechanics. A...
Optomechanical coupling in a nanocavity formed between two cantilevers is tuned through renormalizat...