Publication | Closed Access
Electromagnetic Saturation of Angstrom-Sized Quantum Barriers at Terahertz Frequencies
69
Citations
37
References
2015
Year
Thz PhotonicsTerahertz TechnologyEngineeringTerahertz PhotonicsSemiconductorsTerahertz PhysicsTunneling MicroscopyNanoelectronicsQuantum MaterialsElectron TunnelingNanophotonicsTerahertz SpectroscopyPhysicsTerahertz ScienceQuantum TunnelingMetal-graphene-metal Hybrid StructuresElectromagnetic SaturationApplied PhysicsGrapheneTerahertz TechniqueGraphene Nanoribbon
Metal-graphene-metal hybrid structures allow angstrom-scale van der Waals gaps, across which electron tunneling occurs. We squeeze terahertz electromagnetic waves through these λ/10 000 000 gaps, accompanied by giant field enhancements. Unprecedented transmission reduction of 97% is achieved with the transient voltage across the gap saturating at 5 V. Electron tunneling facilitated by the transient electric field strongly modifies the gap index, starting a self-limiting process related to the barrier height. Our work enables greater interplay between classical optics and quantum tunneling, and provides optical indices to the van der Waals gaps.
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