Terahertz Nonlinearity in Graphene Plasmons
arXiv:1512.07508 · doi:10.1021/acs.nanolett.6b00405
Abstract
Sub-wavelength graphene structures support localized plasmonic resonances in the terahertz and mid-infrared spectral regimes. The strong field confinement at the resonant frequency is predicted to significantly enhance the light-graphene interaction, which could enable nonlinear optics at low intensity in atomically thin, sub-wavelength devices. To date, the nonlinear response of graphene plasmons and their energy loss dynamics have not been experimentally studied. We measure and theoretically model the terahertz nonlinear response and energy relaxation dynamics of plasmons in graphene nanoribbons. We employ a THz pump-THz probe technique at the plasmon frequency and observe a strong saturation of plasmon absorption followed by a 10 ps relaxation time. The observed nonlinearity is enhanced by two orders of magnitude compared to unpatterned graphene with no plasmon resonance. We further present a thermal model for the nonlinear plasmonic absorption that supports the experimental results.
References in corpus (11)
- Intrinsic and Extrinsic Performance Limits of Graphene Devices on SiO2
- Mid-infrared plasmons in scaled graphene nanostructures
- Large energy mode locking of an erbium-doped fiber laser with atomic layer graphene
- Nonlinear electromagnetic response of graphene: Frequency multiplication and the self-consistent-field effects
- Electron-phonon heat transfer in monolayer and bilayer graphene
- Extraordinary nonlinear plasmonics in graphene nanoislands
- Semiconducting-to-metallic photoconductivity crossover and temperature-dependent Drude weight in graphene
- Hybrid Metal-Graphene Plasmons for Tunable Terahertz Technology
- Tuning Photoinduced Terahertz Conductivity in Monolayer Graphene: Optical Pump Terahertz Probe Spectroscopy
- Microscopic description of intraband absorption in graphene: the occurrence of transient negative differential transmission
- Electron-phonon cooling in large monolayer graphene devices
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- Fundamental Limits to the Coupling between Light and 2D Polaritons by Small Scatterers
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- Optical Control of Chiral Charge Pumping in a Topological Weyl Semimetal
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- Tunable Ultrafast Thermal Relaxation in Graphene Measured by Continuous-Wave Photomixing
- Interaction Between an Optically Levitated Nanoparticle and Its Thermal Image: Internal Thermometry via Displacement Sensing
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- Plasmon-induced nonlinearity enhancement and homogenization of graphene metasurfaces
- Chiral Light-Matter Interactions with Thermal Magnetoplasmons in Graphene Nanodisks
- Nanoscale Terahertz Conductivity and Ultrafast Dynamics of Terahertz Plasmons in Periodic Arrays of Epitaxial Graphene Nanoribbons
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- Thermal radiation as a probe of one-dimensional electron liquids
- Second harmonic generation and third harmonic generation in topological insulator-based van der Waals metamaterials
- Free-electron coupling to surface polaritons mediated by small scatterers
- Ultrafast All-optical control of Multiple Light Degrees of Freedom through Mode-mixing in a Graphene Nanoribbon Metamaterial
- Ultrafast terahertz conductivity in epitaxial graphene nanoribbons: an interplay between photoexcited and secondary hot carriers
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- Ultrafast Momentum-Resolved Probing of Plasmon Thermal Dynamics with Free Electrons