Publication | Open Access
Near-field imaging and spectroscopy of terahertz resonators and metasurfaces [Invited]
18
Citations
90
References
2023
Year
Thz PhotonicsTerahertz TechnologyEngineeringMicroscopyMetasurfacesMetamaterialsTerahertz PhotonicsElectromagnetic MetamaterialsTerahertz PhysicsThz FrequenciesOptical PropertiesSpatial ResolutionNanophotonicsTerahertz SpectroscopyPhysicsTerahertz ScienceSuper-resolutionMetasurface OperationTerahertz DevicesNear-field ImagingNatural SciencesSpectroscopyApplied PhysicsTerahertz TechniqueTerahertz Applications
Terahertz (THz) metasurfaces have become a key platform for engineering light-matter interaction at THz frequencies. They have evolved from simple metallic resonator arrays into tunable and programmable devices, displaying ultrafast modulation rates and incorporating emerging quantum materials. The electrodynamics which govern metasurface operation can only be directly revealed at the scale of subwavelength individual metasurface elements, through sampling their evanescent fields. It requires near-field spectroscopy and imaging techniques to overcome the diffraction limit and provide spatial resolution down to the nanoscale. Through a series of case studies, this review provides an in-depth overview of recently developed THz near-field microscopy capabilities for research on metamaterials.
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