The polarization of light can be rotated in materials with an absence of molecular or structural mirror symmetry. While this rotating ability is normally rather weak in naturally occurring chiral materials, artificial chiral metamaterials have demonstrated extraordinary rotational ability by engineering intra-molecular couplings. However, while in general, chiral metamaterials can exhibit strong rotatory power at or around resonances, they convert linearly polarized waves into elliptically polarized ones. Here, we demonstrate that strong inter-molecular coupling through a small gap between adjacent chiral metamolecules can lead to a broadband enhanced rotating ability with pure rotation of linearly polarized electromagnetic waves. Strong in...
We report that normal incidence transmission of circularly polarized light through lossy anisotropic...
We study the opto-mechanical properties of coupled chiral meta-atoms based on a pair of twisted spli...
Chiral metamaterials allow for obtaining very large chiral optical effects which result specifically...
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 the classical phenomenon of optical activity, which is traditionally associated with ...
As naturally occurring chiral materials demonstrate limited circularly dichroic contrast, enhancemen...
We demonstrate optical activity in an intrinsically non-chiral anisotropic planar metamaterial. The ...
The control of the optical activity and ellipticity of a medium has drawn considerable attention due...
The control of the optical activity and ellipticity of a medium has drawn considerable attention due...
The control of the optical activity and ellipticity of a medium has drawn considerable attention due...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariza...
Switching the handedness, or the chirality, of a molecule is of great importance in chemistry and bi...
As natural chiral materials demonstrate limited circularly dichroic contrasts, enhancement of these ...
We report that normal incidence transmission of circularly polarized light through lossy anisotropic...
We study the opto-mechanical properties of coupled chiral meta-atoms based on a pair of twisted spli...
Chiral metamaterials allow for obtaining very large chiral optical effects which result specifically...
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 the classical phenomenon of optical activity, which is traditionally associated with ...
As naturally occurring chiral materials demonstrate limited circularly dichroic contrast, enhancemen...
We demonstrate optical activity in an intrinsically non-chiral anisotropic planar metamaterial. The ...
The control of the optical activity and ellipticity of a medium has drawn considerable attention due...
The control of the optical activity and ellipticity of a medium has drawn considerable attention due...
The control of the optical activity and ellipticity of a medium has drawn considerable attention due...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariza...
Switching the handedness, or the chirality, of a molecule is of great importance in chemistry and bi...
As natural chiral materials demonstrate limited circularly dichroic contrasts, enhancement of these ...
We report that normal incidence transmission of circularly polarized light through lossy anisotropic...
We study the opto-mechanical properties of coupled chiral meta-atoms based on a pair of twisted spli...
Chiral metamaterials allow for obtaining very large chiral optical effects which result specifically...