Three- and two-dimensional chirality arising from the mutual orientation of non-chiral planar metamaterial structures and the incident electromagnetic wave (extrinsic chirality) lead to pronounced optical activity, circular dichroism and asymmetric transmission indistinguishable from those seen in media consisting of three- and two-dimensionally chiral molecules (intrinsic chirality)
Conventional three-dimensionally (3D) chiral media can exhibit optical activity for transmitted wave...
We report the first experiential observation and theoretical analysis of the new phenomenon of plana...
Plasmonic nanostructures with achiral, but asymmetric shapes can exhibit chiro-optical phenomena at ...
Recently we have shown that the classical phenomenon of optical activity, which is traditionally ass...
Electromagnetic metamaterials are artificial media that derive novel properties from periodic struct...
Electromagnetic metamaterials are artificial media that derive novel properties from periodic struct...
We demonstrate optical activity in an intrinsically non-chiral anisotropic planar metamaterial. The ...
We demonstrate strong optical activity (and circular dichroism) for both microwave and photonic achi...
Chiral metamaterials represent a special type of artificial structures that cannot be superposed to ...
We report that the classical phenomenon of optical activity, which is traditionally associated with ...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariza...
We demonstrate strong circular dichroism for achiral photonic planar metamaterials. The effect arise...
Any planar structure can be superimposed with its mirror image. Despite lacking conventional chirali...
We summarize the progress in the development and application of chiral metamaterials. After a brief ...
We report the first experiential observation and theoretical analysis of the new phenomenon of plana...
Conventional three-dimensionally (3D) chiral media can exhibit optical activity for transmitted wave...
We report the first experiential observation and theoretical analysis of the new phenomenon of plana...
Plasmonic nanostructures with achiral, but asymmetric shapes can exhibit chiro-optical phenomena at ...
Recently we have shown that the classical phenomenon of optical activity, which is traditionally ass...
Electromagnetic metamaterials are artificial media that derive novel properties from periodic struct...
Electromagnetic metamaterials are artificial media that derive novel properties from periodic struct...
We demonstrate optical activity in an intrinsically non-chiral anisotropic planar metamaterial. The ...
We demonstrate strong optical activity (and circular dichroism) for both microwave and photonic achi...
Chiral metamaterials represent a special type of artificial structures that cannot be superposed to ...
We report that the classical phenomenon of optical activity, which is traditionally associated with ...
We introduce a chiral metamaterial with strong, non-resonant optical activity, and very low polariza...
We demonstrate strong circular dichroism for achiral photonic planar metamaterials. The effect arise...
Any planar structure can be superimposed with its mirror image. Despite lacking conventional chirali...
We summarize the progress in the development and application of chiral metamaterials. After a brief ...
We report the first experiential observation and theoretical analysis of the new phenomenon of plana...
Conventional three-dimensionally (3D) chiral media can exhibit optical activity for transmitted wave...
We report the first experiential observation and theoretical analysis of the new phenomenon of plana...
Plasmonic nanostructures with achiral, but asymmetric shapes can exhibit chiro-optical phenomena at ...