Research paperExperimental CharacterizationImaging exciton-polariton transport in MoSe₂ waveguidesF. Hu, Y. Luan, M. E. Scott, J. Yan et al.2023·10.1038/nphoton.2017.65·arXiv:2301.12980AbstractNano-optical imaging of waveguide exciton polaritons in exfoliated MoSe₂ thin flakes on SiO₂/Si wafers shows energy-dependent interference fringes, polariton propagation lengths exceeding 12 µm at low energies, tunable polariton wavelengths from about 600 nm to 300 nm with thickness, and back-bending dispersion near the A-exciton resonance.Read more
Exfoliated MoSe₂ thin flake planar waveguide with thickness 156 nm on a SiO₂/Si wafer.1 characterization8 properties3 figuresExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 110 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 77 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Research paperExperimental CharacterizationImaging exciton-polariton transport in MoSe₂ waveguidesF. Hu, Y. Luan, M. E. Scott, J. Yan et al.2023·10.1038/nphoton.2017.65·arXiv:2301.12980AbstractNano-optical imaging of waveguide exciton polaritons in exfoliated MoSe₂ thin flakes on SiO₂/Si wafers shows energy-dependent interference fringes, polariton propagation lengths exceeding 12 µm at low energies, tunable polariton wavelengths from about 600 nm to 300 nm with thickness, and back-bending dispersion near the A-exciton resonance.Read more
Exfoliated MoSe₂ thin flake planar waveguide with thickness 156 nm on a SiO₂/Si wafer.1 characterization8 properties3 figuresExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 110 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 77 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Research paperExperimental CharacterizationImaging exciton-polariton transport in MoSe₂ waveguidesF. Hu, Y. Luan, M. E. Scott, J. Yan et al.2023·10.1038/nphoton.2017.65·arXiv:2301.12980AbstractNano-optical imaging of waveguide exciton polaritons in exfoliated MoSe₂ thin flakes on SiO₂/Si wafers shows energy-dependent interference fringes, polariton propagation lengths exceeding 12 µm at low energies, tunable polariton wavelengths from about 600 nm to 300 nm with thickness, and back-bending dispersion near the A-exciton resonance.Read more
Exfoliated MoSe₂ thin flake planar waveguide with thickness 156 nm on a SiO₂/Si wafer.1 characterization8 properties3 figuresExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 110 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 77 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Research paperExperimental CharacterizationImaging exciton-polariton transport in MoSe₂ waveguidesF. Hu, Y. Luan, M. E. Scott, J. Yan et al.2023·10.1038/nphoton.2017.65·arXiv:2301.12980AbstractNano-optical imaging of waveguide exciton polaritons in exfoliated MoSe₂ thin flakes on SiO₂/Si wafers shows energy-dependent interference fringes, polariton propagation lengths exceeding 12 µm at low energies, tunable polariton wavelengths from about 600 nm to 300 nm with thickness, and back-bending dispersion near the A-exciton resonance.Read more
Exfoliated MoSe₂ thin flake planar waveguide with thickness 156 nm on a SiO₂/Si wafer.1 characterization8 properties3 figuresExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 110 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand
Exfoliated MoSe₂ thin flake planar waveguide with thickness 77 nm on a SiO₂/Si wafer.1 characterization1 property1 figureExperimentalMoSe₂Studied MaterialExpand