We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon absorption, with exciting implications in classical and quantum nonlinear optics. Specifically, we predict that graphene nanoribbons can be used as saturable absorbers with low saturation intensity in the farinfrared and terahertz spectrum. Moreover, we predict that two-plasmon absorption and extreme localization of plasmon fields in graphene nanodisks can lead to a plasmon blockade effect, in which a single quantized plasmon strongly suppresses the possibility of exciting a second plasmon
We demonstrate that the effective nonlinear susceptibility of a graphene nanoribbon metasurface can ...
Plasmons provide excellent sensitivity to detect analyte molecules through their strong interaction ...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
Subwavelength graphene structures support localized plasmonic resonances in the terahertz and mid-in...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Nonlinear optics is limited by the weak nonlinear response of available materials, a problem that is...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...
Graphene is known to possess strong optical nonlinearity which turned out to be suitable for creatio...
Graphene is known to possess strong optical nonlinearity which turned out to be suitable for creatio...
Plasmons provide excellent sensitivity to detect analyte molecules through their strong interaction ...
We demonstrate that the effective nonlinear susceptibility of a graphene nanoribbon metasurface can ...
Plasmons provide excellent sensitivity to detect analyte molecules through their strong interaction ...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
Subwavelength graphene structures support localized plasmonic resonances in the terahertz and mid-in...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Nonlinear optics is limited by the weak nonlinear response of available materials, a problem that is...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...
Graphene is known to possess strong optical nonlinearity which turned out to be suitable for creatio...
Graphene is known to possess strong optical nonlinearity which turned out to be suitable for creatio...
Plasmons provide excellent sensitivity to detect analyte molecules through their strong interaction ...
We demonstrate that the effective nonlinear susceptibility of a graphene nanoribbon metasurface can ...
Plasmons provide excellent sensitivity to detect analyte molecules through their strong interaction ...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...