Optomechanical Microcavity With a Tensile-strained InGaP Membrane
Paper in proceeding, 2024

We characterize a chip-based optomechanical microcavity that confines light between a crystalline DBR and a suspended InGaP photonic crystal high-Q membrane. In the future this approach could enable nonlinear quantum optomechanics.

Author

[Person af3a5bfc-9d19-499a-bf63-874d44e80725 not found]

[Person 40c8e183-20e8-4014-9e49-ca5778491a5c not found]

[Person ad8d7289-2d85-4bd5-9970-dd84333453bb not found]

[Person b2087c8c-56ff-4021-b350-64fd0599428e not found]

Quantum 2.0 in Proceedings Quantum 2.0 Conference and Exhibition


9781557525185 (ISBN)

Quantum 2.0, QUANTUM 2024 in Quantum 2.0 Conference and Exhibition
Rotterdam, Netherlands,

Subject Categories (SSIF 2011)

Atom and Molecular Physics and Optics

Other Physics Topics

DOI

10.1364/quantum.2024.qtu3a.13

More information

Latest update

7/30/2025