Research paperExperimental CharacterizationSingle-point-diamond-turned GaAs disk resonator with over a million optical quality factorLily M. Platt, Mallika Irene Suresh, Farhan Azeem, Luke S. Trainor et al.arXiv preprint·2024·10.5281/zenodo.8072306·arXiv:2408.07076AbstractGallium arsenide optical resonators have been identified as platforms for light-matter interactions ranging from optomechanics to quantum electrodynamics involving nonlinear optics. Here, we present a 5-mm-diameter whispering gallery mode resonator made of undoped gallium arsenide. The fabrication was done using single-point diamond turning followed by polishing with diamond solutions of varying grain size. The resulting resonator was optically characterized to have a quality factor of more than a million.Read more
Single-point-diamond-turned and hand-polished GaAs whispering-gallery-mode disk resonator with 5 mm diameter and 2.3 mm radius.3 preparations1 characterization5 properties2 figuresExperimentalGaAsStudied MaterialExpand
Research paperExperimental CharacterizationSingle-point-diamond-turned GaAs disk resonator with over a million optical quality factorLily M. Platt, Mallika Irene Suresh, Farhan Azeem, Luke S. Trainor et al.arXiv preprint·2024·10.5281/zenodo.8072306·arXiv:2408.07076AbstractGallium arsenide optical resonators have been identified as platforms for light-matter interactions ranging from optomechanics to quantum electrodynamics involving nonlinear optics. Here, we present a 5-mm-diameter whispering gallery mode resonator made of undoped gallium arsenide. The fabrication was done using single-point diamond turning followed by polishing with diamond solutions of varying grain size. The resulting resonator was optically characterized to have a quality factor of more than a million.Read more
Single-point-diamond-turned and hand-polished GaAs whispering-gallery-mode disk resonator with 5 mm diameter and 2.3 mm radius.3 preparations1 characterization5 properties2 figuresExperimentalGaAsStudied MaterialExpand
Research paperExperimental CharacterizationSingle-point-diamond-turned GaAs disk resonator with over a million optical quality factorLily M. Platt, Mallika Irene Suresh, Farhan Azeem, Luke S. Trainor et al.arXiv preprint·2024·10.5281/zenodo.8072306·arXiv:2408.07076AbstractGallium arsenide optical resonators have been identified as platforms for light-matter interactions ranging from optomechanics to quantum electrodynamics involving nonlinear optics. Here, we present a 5-mm-diameter whispering gallery mode resonator made of undoped gallium arsenide. The fabrication was done using single-point diamond turning followed by polishing with diamond solutions of varying grain size. The resulting resonator was optically characterized to have a quality factor of more than a million.Read more
Single-point-diamond-turned and hand-polished GaAs whispering-gallery-mode disk resonator with 5 mm diameter and 2.3 mm radius.3 preparations1 characterization5 properties2 figuresExperimentalGaAsStudied MaterialExpand
Research paperExperimental CharacterizationSingle-point-diamond-turned GaAs disk resonator with over a million optical quality factorLily M. Platt, Mallika Irene Suresh, Farhan Azeem, Luke S. Trainor et al.arXiv preprint·2024·10.5281/zenodo.8072306·arXiv:2408.07076AbstractGallium arsenide optical resonators have been identified as platforms for light-matter interactions ranging from optomechanics to quantum electrodynamics involving nonlinear optics. Here, we present a 5-mm-diameter whispering gallery mode resonator made of undoped gallium arsenide. The fabrication was done using single-point diamond turning followed by polishing with diamond solutions of varying grain size. The resulting resonator was optically characterized to have a quality factor of more than a million.Read more
Single-point-diamond-turned and hand-polished GaAs whispering-gallery-mode disk resonator with 5 mm diameter and 2.3 mm radius.3 preparations1 characterization5 properties2 figuresExperimentalGaAsStudied MaterialExpand