One of the most intuitive ways to classically understand the generation of natural optical activity in chiral media is provided by the coupled oscillator model of Born and Kuhn consisting of two identical, vertically displaced, coupled oscillators. We experimentally realize and discuss its exact plasmonic analog in a system of corner-stacked gold nanorods. In particular, we analyze the arising circular dichroism and optical rotatory spectra in terms of hybridized electromagnetic modes and retardation. Specifically, we demonstrate how tuning the vertical distance between the nanorods can lead to a selective excitation of the occurring bonding and antibonding chiral plasmonic modes
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
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...
Chiral plexcitons, produced by the strong interaction between plasmonic nanocavities and chiral mole...
<div> Circular dichroism (CD) studies on single nanostructures can yield novel </div> <div> &...
We report a computational study at the time-dependent density functional theory (TDDFT) level of the...
The life is inherently chiral. Consequently, chirality plays a pivotal role in biochemistry and the ...
7noWe report a computational study at the time-dependent density functional theory (TDDFT) level of ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
We show how extrinsic chirality, i.e. the optical activity of achiral media exhibited at oblique lig...
Chiral metal nanoparticle assemblies exhibit plasmonic circular dichroism (CD) in the visible spectr...
Chirality is an important molecular property for structural analysis. Similarly, it has been shown t...
Templated by DNA origami, plasmonic gold nanorods (AuNRs) could be assembled into complex nanostruct...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...
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...
Chiral plexcitons, produced by the strong interaction between plasmonic nanocavities and chiral mole...
<div> Circular dichroism (CD) studies on single nanostructures can yield novel </div> <div> &...
We report a computational study at the time-dependent density functional theory (TDDFT) level of the...
The life is inherently chiral. Consequently, chirality plays a pivotal role in biochemistry and the ...
7noWe report a computational study at the time-dependent density functional theory (TDDFT) level of ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
We show how extrinsic chirality, i.e. the optical activity of achiral media exhibited at oblique lig...
Chiral metal nanoparticle assemblies exhibit plasmonic circular dichroism (CD) in the visible spectr...
Chirality is an important molecular property for structural analysis. Similarly, it has been shown t...
Templated by DNA origami, plasmonic gold nanorods (AuNRs) could be assembled into complex nanostruct...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
Chiral metamaterials can have diverse technological applications, such as engineering strongly twist...