We systematically investigate the generation of optical chirality patterns by applying the superposition of two waves in three scenarios, namely free-space plane waves, evanescent waves of totally reflected light at dielectric interface and propagating surface plasmon waves on a metallic surface. In each scenario, the general analytical solution of the optical chirality pattern is derived for different polarization states and propagating directions of the two waves. The analytical solutions are verified by numerical simulations. Spatially structured optical chirality patterns can be generated in all scenarios if the incident polarization states and propagation directions are correctly chosen. Optical chirality enhancement can be obtained fr...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
This tutorial provides a comprehensive description of the origin of chiroptical properties of supram...
This is the final version. Available on open access from the Optical Society of America via the DOI ...
We present a novel chiral sensing platform that combines a one-dimensional photonic crystal design w...
Electromagnetic fields with strong optical chirality can be formed in the near-field of chiral plasm...
7 pags., 6 figs.Chirality is a crucial aspect in life sciences, where systems capable of enhancing t...
Chiral fields, i. e., electromagnetic fields with nonvanishing optical chirality, can occur next to ...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
We study the chiroptical properties of one-dimensional photonic crystals supporting superchiral surf...
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...
This dissertation is devoted to understanding the characteristics of an electromagnetic field associ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasm...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
This tutorial provides a comprehensive description of the origin of chiroptical properties of supram...
This is the final version. Available on open access from the Optical Society of America via the DOI ...
We present a novel chiral sensing platform that combines a one-dimensional photonic crystal design w...
Electromagnetic fields with strong optical chirality can be formed in the near-field of chiral plasm...
7 pags., 6 figs.Chirality is a crucial aspect in life sciences, where systems capable of enhancing t...
Chiral fields, i. e., electromagnetic fields with nonvanishing optical chirality, can occur next to ...
Plasmonic chirality represents significant potential for novel nanooptical devices due to its associ...
We study the chiroptical properties of one-dimensional photonic crystals supporting superchiral surf...
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...
This dissertation is devoted to understanding the characteristics of an electromagnetic field associ...
Dark-field illumination is shown to make planar chiral nanoparticle arrangements exhibit circular di...
Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasm...
Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never obser...
This tutorial provides a comprehensive description of the origin of chiroptical properties of supram...
This is the final version. Available on open access from the Optical Society of America via the DOI ...