We demonstrate deep subwavelength confinement of surface phonon-polaritons in silicon carbide by capping the crystal with nanometric layers of MoS2. Near-field nano-imaging shows 85 time surface wave confinement in comparison with free-space wavelength of 11.15 micrometers
We report on the strong enhancement of mid-infrared second-harmonic generation (SHG) from SiC nanopi...
Optical near fields exist close to any illuminated object. They account for interesting effects such...
Tailoring light-matter interaction is essential to realize nanophotonic components. It can be achiev...
Improvements in device density in photonic circuits can only be achieved with interconnects exploiti...
Plasmonics on metal-dielectric interfaces was widely seen as the main route for miniaturization of c...
Plasmonics on metal-dielectric interfaces was widely seen as the main route for miniaturization of c...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Plasmonics provides great promise for nanophotonic applications. However, the high optical losses in...
Chemical sensing methods based on surface polaritonic resonances stem from their intense near fields...
Following the recent observation of localized phonon polaritons in user-defined silicon carbide nano...
Chemical sensing methods based on surface polaritonic resonances stem from their intense near fields...
Mid-infrared (MIR) photonics demands highly confined optical fields to obtain efficient interaction ...
This article belongs to the Special Issue 2D Materials and Their Heterostructures and Superlattices....
Surface phonon polaritons (SPhP) and surface plasmon polaritons (SPP), evanescent modes supported by...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...
We report on the strong enhancement of mid-infrared second-harmonic generation (SHG) from SiC nanopi...
Optical near fields exist close to any illuminated object. They account for interesting effects such...
Tailoring light-matter interaction is essential to realize nanophotonic components. It can be achiev...
Improvements in device density in photonic circuits can only be achieved with interconnects exploiti...
Plasmonics on metal-dielectric interfaces was widely seen as the main route for miniaturization of c...
Plasmonics on metal-dielectric interfaces was widely seen as the main route for miniaturization of c...
Tailoring near-field optical phenomena often requires excitation of surface plasmon polaritons (SPPs...
Plasmonics provides great promise for nanophotonic applications. However, the high optical losses in...
Chemical sensing methods based on surface polaritonic resonances stem from their intense near fields...
Following the recent observation of localized phonon polaritons in user-defined silicon carbide nano...
Chemical sensing methods based on surface polaritonic resonances stem from their intense near fields...
Mid-infrared (MIR) photonics demands highly confined optical fields to obtain efficient interaction ...
This article belongs to the Special Issue 2D Materials and Their Heterostructures and Superlattices....
Surface phonon polaritons (SPhP) and surface plasmon polaritons (SPP), evanescent modes supported by...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...
We report on the strong enhancement of mid-infrared second-harmonic generation (SHG) from SiC nanopi...
Optical near fields exist close to any illuminated object. They account for interesting effects such...
Tailoring light-matter interaction is essential to realize nanophotonic components. It can be achiev...