We demonstrate a type of meta-atom for creating metamaterials with giant nonlinear optical activity but vanishing linear optical activity in a wide frequency range. Such properties are not found in any natural materials, and we call this regime as pure nonlinear optical activity. We further extend our design concept and show that the metamaterial can be tuned dynamically to exhibit either positive or negative polarization rotation.The work was supported by the Australian Research Council through Discovery Projects scheme
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariz...
We report that engineering of chiral and nonlinear optical properties in plasmonic metamaterial allo...
We report million-fold enhancement of nonlinear optical activity and metamaterial polarization spect...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariza...
We demonstrate optical activity in an intrinsically non-chiral anisotropic planar metamaterial. The ...
We report that the classical phenomenon of optical activity, which is traditionally associated with ...
We create the first nonlinear chiral metamaterial operating at microwave frequencies that demonstrat...
We propose and experimentally verify a way to achieve strong nonlinear coupling between the electrom...
We create the first nonlinear chiral metamaterial operating at microwave frequencies that demonstrat...
A novel type of metamaterial is introduced, where the structural symmetry can be controlled by optic...
Within a decade of fruitful development, metamaterials became a prominent area of research, bridging...
We report that engineering of chiral and nonlinear optical properties in plasmonic metamaterial allo...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariz...
We report that engineering of chiral and nonlinear optical properties in plasmonic metamaterial allo...
We report million-fold enhancement of nonlinear optical activity and metamaterial polarization spect...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariza...
We demonstrate optical activity in an intrinsically non-chiral anisotropic planar metamaterial. The ...
We report that the classical phenomenon of optical activity, which is traditionally associated with ...
We create the first nonlinear chiral metamaterial operating at microwave frequencies that demonstrat...
We propose and experimentally verify a way to achieve strong nonlinear coupling between the electrom...
We create the first nonlinear chiral metamaterial operating at microwave frequencies that demonstrat...
A novel type of metamaterial is introduced, where the structural symmetry can be controlled by optic...
Within a decade of fruitful development, metamaterials became a prominent area of research, bridging...
We report that engineering of chiral and nonlinear optical properties in plasmonic metamaterial allo...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...