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Electrically-driven Acousto-optics and Broadband Non-reciprocity in Silicon Photonics
Eric A. Kittlaus, William M. Jones, Peter T. Rakich +3
Emerging technologies based on tailorable interactions between photons and phonons promise new capabilities ranging from high-fidelity microwave signal processing to non-reciprocal…
Back-scatter immune injection-locked Brillouin laser in silicon
Nils T. Otterstrom, Shai Gertler, Yishu Zhou +9
As self-sustained oscillators, lasers possess the unusual ability to spontaneously synchronize. These nonlinear dynamics are the basis for a simple yet powerful stabilization techn…
Resonantly enhanced nonreciprocal silicon Brillouin amplifier
Nils T. Otterstrom, Eric A. Kittlaus, Shai Gertler +3
The ability to amplify light within silicon waveguides is central to the development of high-performance silicon photonic device technologies. To this end, the large optical nonlin…
Multimode strong coupling in cavity optomechanics
Prashanta Kharel, Yiwen Chu, Eric A. Kittlaus +3
Optomechanical systems show great potential as quantum transducers and information storage devices for use in future hybrid quantum networks and offer novel strategies for quantum…
High-frequency cavity optomechanics using bulk acoustic phonons
Prashanta Kharel, Glen I. Harris, Eric A. Kittlaus +4
To date, micro- and nano-scale optomechanical systems have enabled many proof-of-principle quantum operations through access to high-frequency (GHz) phonon modes that are readily c…
Optomechanical cooling in a continuous system
Nils T. Otterstrom, Ryan O. Behunin, Eric A. Kittlaus +1
Radiation-pressure-induced optomechanical coupling permits exquisite control of micro- and mesoscopic mechanical oscillators. This ability to manipulate and even damp mechanical mo…