Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical coefficients in the terahertz frequency range surpass those of other materials by many orders of magnitude. Here, we show that the terahertz nonlinearity of graphene, both for ultrashort single-cycle and quasi-monochromatic multicycle input terahertz signals, can be efficiently controlled using electrical gating, with gating voltages as low as a few volts. For example, optimal electrical gating enhances the power conversion efficiency in terahertz third-harmonic generation in graphene by about two orders of magnitude. Our experimental results are in quantitative agreement with a physical model of the graphene nonlinearity, describing the time-d...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
Multiple optical harmonic generation-the multiplication of photon energy as a result of nonlinear in...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Graphene is a nonlinear material in the terahertz (THz) frequency range, with χ(3) ∼ 10–9 m2/V2 ∼ 15...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Eid HAH, Kovalev S, Tielrooij K-J, Bonn M, Gensch M, Turchinovich D. Terahertz Nonlinear Optics of G...
Special Issue: Materials for Terahertz Optical Science and Technology.Graphene has long been predict...
Graphene, which is a two-dimensional crystal of carbon atoms arranged in a hexagonal lattice, has at...
Multiple optical harmonic generation-the multiplication of photon energy as a result of nonlinear in...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
Multiple optical harmonic generation-the multiplication of photon energy as a result of nonlinear in...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Graphene is a nonlinear material in the terahertz (THz) frequency range, with χ(3) ∼ 10–9 m2/V2 ∼ 15...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Quantum materials with massless Dirac fermions - such as graphene and topological insulators - exhib...
Eid HAH, Kovalev S, Tielrooij K-J, Bonn M, Gensch M, Turchinovich D. Terahertz Nonlinear Optics of G...
Special Issue: Materials for Terahertz Optical Science and Technology.Graphene has long been predict...
Graphene, which is a two-dimensional crystal of carbon atoms arranged in a hexagonal lattice, has at...
Multiple optical harmonic generation-the multiplication of photon energy as a result of nonlinear in...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
Multiple optical harmonic generation-the multiplication of photon energy as a result of nonlinear in...
Graphene is a unique 2D material that has been extensively investigated due to its extraordinary pho...