Using a modal matching theory, we demonstrate the generation of short-range, chiral electromagnetic fields via the excitation of arrays of staggered nanoslits that are chiral in two dimensions. The electromagnetic near fields, which exhibit a chiral density greater than that of circularly polarized light, can enhance the chiroptical interactions in the vicinity of the nanoslits. We discuss the features of nanostructure symmetry required to obtain the chiral fields and explicitly show how these structures can give rise to detection and characterization of materials with chiral symmetry
This book describes the physics behind the optical properties of plasmonic nanostructures focusing o...
Planar chiral structures are an intriguing new type of optical meta-material which offer the possibi...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
Using a modal matching theory, we demonstrate the generation of short-range, chiral electromagnetic ...
Chiral metallic nanostructures can generate evanescent fields which are more highly twisted than cir...
Chiral metallic nanostructures can generate evanescent fields which are more highly twisted than cir...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasm...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Nanomaterials can be specially designed to enhance optical chirality and their interaction with chir...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
This book describes the physics behind the optical properties of plasmonic nanostructures focusing o...
Planar chiral structures are an intriguing new type of optical meta-material which offer the possibi...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
Using a modal matching theory, we demonstrate the generation of short-range, chiral electromagnetic ...
Chiral metallic nanostructures can generate evanescent fields which are more highly twisted than cir...
Chiral metallic nanostructures can generate evanescent fields which are more highly twisted than cir...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasm...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Nanomaterials can be specially designed to enhance optical chirality and their interaction with chir...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
This book describes the physics behind the optical properties of plasmonic nanostructures focusing o...
Planar chiral structures are an intriguing new type of optical meta-material which offer the possibi...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...