activity
20172019
collaborators

5 papers

physics.optics2019

Two-colour interferometry and switching through optomechanical dark mode excitation

David P. Lake, Matthew Mitchell, Barry C. Sanders +1

Efficient switching and routing of photons of different wavelengths is a requirement for realizing a quantum internet. Multimode optomechanical systems can solve this technological…

physics.optics2019

Optomechanically amplified wavelength conversion in diamond microcavities

Matthew Mitchell, David P. Lake, Paul E. Barclay

Efficient, low noise conversion between different colors of light is a necessary tool for interfacing quantum optical technologies that have different operating wavelengths. Optome…

physics.optics2018

Hexagonal boron nitride cavity optomechanics

Prasoon K. Shandilya, Johannes E. Fröch, Matthew Mitchell +7

Hexagonal boron nitride (hBN) is an emerging layered material that plays a key role in a variety of two-dimensional devices, and has potential applications in nanophotonics and nan…

physics.app-ph2018

Realizing > 300,000 in diamond microdisks for optomechanics via etch optimization

Matthew Mitchell, David P. Lake, Paul E. Barclay

Nanophotonic structures in single--crystal diamond (SCD) that simultaneously confine and co-localize photons and phonons are highly desirable for applications in quantum informatio…

physics.optics2017

Optomechanically induced transparency and cooling in thermally stable diamond microcavities

David P. Lake, Matthew Mitchell, Yasmeen Kamaliddin +1

Diamond cavity optomechanical devices hold great promise for quantum technology based on coherent coupling between photons, phonons and spins. These devices benefit from the except…