activity
20182020
most citedDueling Dynamical Backaction in a Cryogenic Optomechanical Cavity

14 citations · 14 across the 1 of their papers we have counts for

collaborators

5 papers

physics.app-ph2020

Monitored wet-etch removal of individual dielectric layers from high-finesse Bragg mirrors

Simon Bernard, Thomas J. Clark, Vincent Dumont +2

It is prohibitively expensive to deposit customized dielectric coatings on individual optics. One solution is to batch-coat many optics with extra dielectric layers, then remove la…

cond-mat.mes-hall2020

Wavelength transduction from a 3D microwave cavity to telecom using piezoelectric optomechanical crystals

H. Ramp, T. J. Clark, B. D. Hauer +4

Microwave to optical transduction has received a great deal of interest from the cavity optomechanics community as a landmark application for electro-optomechanical systems. In thi…

cond-mat.mes-hall201914 cited

Dueling Dynamical Backaction in a Cryogenic Optomechanical Cavity

B. D. Hauer, T. J. Clark, P. H. Kim +2

Dynamical backaction has proven to be a versatile tool in cavity optomechanics, allowing for precise manipulation of a mechanical resonator's motion using confined optical photons.…

quant-ph2018

Elimination of Thermomechanical Noise in Piezoelectric Optomechanical Crystals

H. Ramp, B. D. Hauer, K. C. Balram +3

Mechanical modes are a potentially useful resource for quantum information applications, such as quantum-level wavelength transducers, due to their ability to interact with electro…

physics.ins-det2018

Cryogenic Microwave Filter Cavity with a Tunability Greater than 5 GHz

T. J. Clark, V. Vadakkumbatt, F. Souris +2

A wide variety of applications of microwave cavities, such as measurement and control of superconducting qubits, magnonic resonators, and phase noise filters, would be well served…