We theoretically examine the spatiotemporal evolution of enhanced near-field optical chirality (OC) in both plasmonic and dielectric nanospheres when excited by ultrashort optical pulses. We demonstrate distinct spatiotemporal variations in near-field OC arising from the differing natures of plasmonic and dielectric resonators. The electric dipole resonant plasmonic nanosphere generates instantaneous near-field OC that relies on the interference between incident and scattered (induced) fields. Conversely, a resonant dielectric nanosphere sustains long-lasting OC even after the incident field diminishes due to the scattered field from resonant electric and magnetic dipole modes. We further demonstrate the control over the near-field OC using...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
We theoretically examine the spatiotemporal evolution of enhanced near-field optical chirality (OC) ...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
Recent progress in nanofabrication has redrawn the boundaries of the applicability of chiroptical (c...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
\u3cp\u3eWe investigate the chiro-optical properties of the electromagnetic near-field associated wi...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
Surface-enhanced circular dichroism (SECD) of chiral molecules adsorbed on plasmonic nanostructures ...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
We theoretically examine the spatiotemporal evolution of enhanced near-field optical chirality (OC) ...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
Recent progress in nanofabrication has redrawn the boundaries of the applicability of chiroptical (c...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
\u3cp\u3eWe investigate the chiro-optical properties of the electromagnetic near-field associated wi...
The interaction of circularly polarized light with matter is the basis for molecular circular dichro...
Surface-enhanced circular dichroism (SECD) of chiral molecules adsorbed on plasmonic nanostructures ...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
Chiral plasmonic systems have been shown to exhibit large chiroptical responses, much larger than th...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...