Fabrication and characterization of shape- and topology-optimized optical cavities with deep sub-wavelength confinement for interfacing with colloidal quantum dots | Matter42 Literature
Fabrication and characterization of shape- and topology-optimized optical cavities with deep sub-wavelength confinement for interfacing with colloidal quantum dots
Mohammad Abutoama, Rasmus Ellebæk Christiansen, Adrian Holm Dubré, Meng Xiong et al.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Fabricated InP photonic crystal nanocavity membrane in air, with deep subwavelength gap region; some devices measured without QDs and with spin-coated colloidal QDs.
Fabrication and characterization of shape- and topology-optimized optical cavities with deep sub-wavelength confinement for interfacing with colloidal quantum dots
Mohammad Abutoama, Rasmus Ellebæk Christiansen, Adrian Holm Dubré, Meng Xiong et al.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Fabricated InP photonic crystal nanocavity membrane in air, with deep subwavelength gap region; some devices measured without QDs and with spin-coated colloidal QDs.
Fabrication and characterization of shape- and topology-optimized optical cavities with deep sub-wavelength confinement for interfacing with colloidal quantum dots
Mohammad Abutoama, Rasmus Ellebæk Christiansen, Adrian Holm Dubré, Meng Xiong et al.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Fabricated InP photonic crystal nanocavity membrane in air, with deep subwavelength gap region; some devices measured without QDs and with spin-coated colloidal QDs.
Fabrication and characterization of shape- and topology-optimized optical cavities with deep sub-wavelength confinement for interfacing with colloidal quantum dots
Mohammad Abutoama, Rasmus Ellebæk Christiansen, Adrian Holm Dubré, Meng Xiong et al.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Fabricated InP photonic crystal nanocavity membrane in air, with deep subwavelength gap region; some devices measured without QDs and with spin-coated colloidal QDs.