Terahertz Science and Technology of Carbon Nanomaterials
arXiv:1311.6035 · doi:10.1088/0957-4484/25/32/322001
Abstract
The diverse applications of terahertz radiation and its importance to fundamental science makes finding ways to generate, manipulate, and detect terahertz radiation one of the key areas of modern applied physics. One approach is to utilize carbon nanomaterials, in particular, single-wall carbon nanotubes and graphene. Their novel optical and electronic properties offer much promise to the field of terahertz science and technology. This article describes the past, current, and future of the terahertz science and technology of carbon nanotubes and graphene. We will review fundamental studies such as terahertz dynamic conductivity, terahertz nonlinearities, and ultrafast carrier dynamics as well as terahertz applications such as terahertz sources, detectors, modulators, antennas, and polarizers.
29 Pages, 11 figures
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Cited by in corpus (32)
- Irradiated graphene as a tunable Floquet topological insulator
- Quantum theory of the third-order nonlinear electrodynamic effects in graphene
- Uncooled Carbon Nanotube Photodetectors
- Hybrid Metal-Graphene Plasmons for Tunable Terahertz Technology
- Terahertz ratchet effects in graphene with a lateral superlattice
- Floquet interface states in illuminated three-dimensional topological insulators
- Quantum Theory of the Third-Harmonic Generation in Graphene
- Graphene Terahertz Devices for Sensing and Communication
- Nonperturbative quasi-classical theory of the nonlinear electrodynamic response of graphene
- Band Gaps in Jagged and Straight Graphene Nanoribbons Tunable by an External Electric Field
- Passive and hybrid mode locking in multi-section terahertz quantum cascade lasers
- Two-dimensional Dirac particles in a Pöschl-Teller waveguide
- Terahertz Excitonics in Carbon Nanotubes: Exciton Autoionization and Multiplication
- Terahertz electric field driven electric currents and ratchet effects in graphene
- Quantum Antennas
- Interband transitions in narrow-gap carbon nanotubes and graphene nanoribbons
- Influence of nanotube length and density on the plasmonic terahertz response of single-walled carbon nanotubes
- Optical Transistor for an Amplification of Radiation in a Broadband THz Domain
- Spatial dispersion effects upon local excitation of extrinsic plasmons in a graphene micro-disk
- Finite temperature dynamical polarization and plasmons in gapped graphene
- Optical Kerr Effect in Graphene: Theoretical Analysis of the Optical Heterodyne Detection Technique
- Third harmonic generation from graphene lying on different substrates: Optical-phonon resonances and interference effects
- Pair states in one-dimensional Dirac systems
- Nanohelices as superlattices: Bloch oscillations and electric dipole transitions
- Carbon nanotube array as a van der Waals two-dimensional hyperbolic material
- Tuning terahertz transitions in a double-gated quantum ring
- Tuning terahertz transitions in cyclo[n]carbon rings
- Guided modes and terahertz transitions for two-dimensional Dirac fermions in a smooth double-well potential
- Momentum alignment and the optical valley Hall effect in low-dimensional Dirac materials
- Terahertz transitions in finite carbon chains
- Possible dimensionality transition behavior in localized plasmon resonances of confinement-controlled graphene devices
- Carbon nanotubes for polarization sensitive terahertz plasmonic interferometry