We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far-field mechanism is utilized which enables chirality to be conveyed from a surrounding chiral molecular material to a plasmonic resonance of an achiral metallic nanostructure. Our observations break a currently held preconception that optical properties of plasmonic particles can most effectively be manipulated by molecular materials through near-field effects. We show that far-field electromagnetic coupling between a localized plasmon of a nonchiral nanostructure and a surrounding chiral molecular layer can induce plasmonic chirality much more effectively (by a factor of 10<sup>3</sup>) than previously reported near-field phenomena. We gain ...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasm...
The plasmonic chiroptical effect has been used to manipulate chiral states of light, where the stron...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
Copyright © 2013 American Physical SocietyWe investigate the chiral properties of near fields around...
This book describes the physics behind the optical properties of plasmonic nanostructures focusing o...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
Recent progress in nanofabrication has redrawn the boundaries of the applicability of chiroptical (c...
Strong chiroptical effects recently reported result from the interaction of light with chiral plasmo...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasm...
The plasmonic chiroptical effect has been used to manipulate chiral states of light, where the stron...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
Copyright © 2013 American Physical SocietyWe investigate the chiral properties of near fields around...
This book describes the physics behind the optical properties of plasmonic nanostructures focusing o...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
Recent progress in nanofabrication has redrawn the boundaries of the applicability of chiroptical (c...
Strong chiroptical effects recently reported result from the interaction of light with chiral plasmo...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...