Publication | Open Access
Coherent thermal infrared emission by two-dimensional silicon carbide gratings
104
Citations
32
References
2012
Year
Transient GratingPhotonicsOptical MaterialsThermal ExcitationEngineeringPhysicsPolariton DynamicOptical PropertiesSurface-phonon PolaritonsApplied PhysicsRestrahlen RegionInfrared OpticCoherent ThermalQuantum Photonic DevicePhotonic DeviceOptoelectronicsCarbide
The thermal emission of cross-slit silicon carbide grating is studied in the Restrahlen region over all emission angles. We show experimentally that the thermal excitation of surface-phonon polaritons on the surface of 2D grating allows us to get a high emissivity in both polarizations, which is collimated in $p$ polarization for a specific wavelength determined by the periodicity of the grating. We also show numerically that 2D gratings optimized to efficiently out-couple thermally excited surface-phonon polaritons of the flat part of the dispersion relation can have a high efficiency for all emission directions for both polarizations.
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