Intense efforts have been made in recent years to realize nonlinear optical interactions at the single-photon level. Much of this work has focused on achieving strong third-order nonlinearities, such as by using single atoms or other quantum emitters, while the possibility of achieving strong second-order nonlinearities remains unexplored. Here, we describe a novel technique to realize such nonlinearities using graphene, exploiting the strong per-photon fields associated with tightly confined graphene plasmons in combination with spatially nonlocal nonlinear optical interactions. We show that in properly designed graphene nanostructures, these conditions enable extremely strong internal down-conversion between a single quantized plasmon and...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...
Intense efforts have been made in recent years to realize nonlinear optical interactions at the sing...
We show that it is possible to realize significant nonlinear optical interactions at the few photon ...
Nonlinear optics is limited by the weak nonlinear response of available materials, a problem that is...
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...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Free electrons act as a source of highly confined, spectrally broad optical fields that are widely u...
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 ...
Second order optical nonlinear processes involve the coherent mixing of two electromagnetic waves to...
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...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...
Intense efforts have been made in recent years to realize nonlinear optical interactions at the sing...
We show that it is possible to realize significant nonlinear optical interactions at the few photon ...
Nonlinear optics is limited by the weak nonlinear response of available materials, a problem that is...
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...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
Free electrons act as a source of highly confined, spectrally broad optical fields that are widely u...
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 ...
Second order optical nonlinear processes involve the coherent mixing of two electromagnetic waves to...
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...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
We show that graphene possesses a strong nonlinear optical response in the form of multiplasmon abso...
Plasmons in highly doped graphene offer the means to dramatically enhance light absorption in the at...