Hybrid Metal-Graphene Plasmons for Tunable Terahertz Technology
arXiv:1506.05817 · doi:10.1021/acs.nanolett.5b03191
Abstract
Among its many outstanding properties, graphene supports terahertz surface plasma waves -- sub-wavelength charge density oscillations connected with electromagnetic fields that are tightly localized near the surface[1,2]. When these waves are confined to finite-sized graphene, plasmon resonances emerge that are characterized by alternating charge accumulation at the opposing edges of the graphene. The resonant frequency of such a structure depends on both the size and the surface charge density, and can be electrically tuned throughout the terahertz range by applying a gate voltage[3,4]. The promise of tunable graphene THz plasmonics has yet to be fulfilled, however, because most proposed optoelectronic devices including detectors, filters, and modulators[5-10] desire near total modulation of the absorption or transmission, and require electrical contacts to the graphene -- constraints that are difficult to meet using existing plasmonic structures. We report here a new class of plasmon resonance that occurs in a hybrid graphene-metal structure. The sub-wavelength metal contacts form a capacitive grid for accumulating charge, while the narrow interleaved graphene channels, to first order, serves as a tunable inductive medium, thereby forming a structure that is resonantly-matched to an incident terahertz wave. We experimentally demonstrate resonant absorption near the theoretical maximum in readily-available, large-area graphene, ideal for THz detectors and tunable absorbers. We further predict that the use of high mobility graphene will allow resonant THz transmission near 100%, realizing a tunable THz filter or modulator. The structure is strongly coupled to incident THz radiation, and solves a fundamental problem of how to incorporate a tunable plasmonic channel into a device with electrical contacts.
References in corpus (12)
- Mid-Infrared Plasmonic Biosensing with Graphene
- Manipulating infrared photons using plasmons in transparent graphene superlattices
- Graphene field effect transistors as room-temperature Terahertz detectors
- Input Impedance, Nanocircuit Loading, and Radiation Tuning of Optical Nanoantennas
- Electronic modulation of infrared emissivity in graphene plasmonic resonators
- Antenna enhanced graphene THz emitter and detector
- Optimizing Broadband Terahertz Modulation with Hybrid Graphene/Metasurface Structures
- Anomalous Reflection Phase of Graphene Plasmons and its Influence on Resonators
- Complete light absorption in graphene-metamaterial corrugated structures
- Influence of contacts on the microwave response of a two-dimensional electron stripe
- Geometric universality of plasmon modes in graphene nanoribbon arrays
- Coupling of Plasmon Modes in Graphene Microstructures
Cited by in corpus (20)
- Electronically Tunable Perfect Absorption in Graphene
- Plasmonically enhanced graphene photodetector featuring 100 GBd, high-responsivity and compact size
- Graphene-plasmon polaritons: From fundamental properties to potential applications
- Graphene based functional devices: A short review
- Terahertz Nonlinearity in Graphene Plasmons
- Programmable Metasurfaces: State of the Art and Prospects
- Switchable induced-transmission filters enabled by vanadium dioxide
- Hybrid Graphene-Plasmon Gratings
- Optical signatures of nonlocal plasmons in graphene
- Modified rigorous coupled-wave analysis for grating-based plasmonic structures with delta-thin conductive channel. Far- and near-field study
- Tunable terahertz plasmons in graphite thin films
- Terahertz magneto-optical properties of graphene hydrodynamic electron liquid
- Plasmon Confinement by Carrier Density Modulation in Graphene
- TE resonances in graphene-dielectric structures
- Second harmonic generation and third harmonic generation in topological insulator-based van der Waals metamaterials
- Quasi-analytical solutions of hybrid platform and the optimization of highly sensitive thin-film sensors for terahertz radiation
- Plasmon-plasmon interaction and the role of buffer in epitaxial graphene micro-flakes
- Unconventional quantization of 2D plasmons in cavities formed by gate slots
- Sweeping Plasma Frequency of Terahertz Surface Plasmon Polaritons with Graphene
- Active spatial control of terahertz graphene plasmons by tailoring carrier density profile