Chiral optical response is an inherent property of molecules and nanostructures, which cannot be superimposed on their mirror images. In specific cases, optical chirality can be observed also for symmetric structures. This so-called extrinsic chirality requires that the mirror symmetry is broken by the geometry of the structure together with the incident or emission angle of light. From the fabrication point of view, the benefit of extrinsic chirality is that there is no need to induce structural chirality at nanoscale. This paper reports demonstration extrinsic chirality of photoluminescence emission from asymmetrically Au-coated GaAs-AlGaAs-GaAs core-shell nanowires fabricated on silicon by a completely lithography-free self-assembled met...
Optical circular dichroism (CD) is an important phenomenon in nanophotonics, that addresses top leve...
Hybridization of semiconductor nanostructures with asymmetric metallic layers offers new paths to ci...
Extrinsic or pseudo-chiral (meta)surfaces have an achiral structure, yet they can give rise to circu...
Chiral optical response is an inherent property of molecules and nanostructures, which cannot be sup...
We report on the extrinsic chirality behavior of GaAs-based NWs asymmetrically hybridized with Au. T...
We demonstrate the control of enhanced chiral field distribution at the surface of hybrid metallo-di...
Hybridized nanostructures composed by metals and dielectrics, semiconductors or organics offer new ...
We report on the extrinsic chirality behavior of GaAs-based NWs asymmetrically hybridized with Au. ...
Semiconductor nanostructures hybridized with metals have been known to offer new opportunities in no...
We demonstrate the control of enhanced chiral field distribution at the surface of hybrid metallo-di...
Nanomaterials can be specially designed to enhance optical chirality and their interaction with chir...
Plasmonic nanostructures with achiral, but asymmetric shapes can exhibit chiro-optical phenomena at ...
Optical circular dichroism (CD) is an important phenomenon in nanophotonics, that addresses top leve...
Even non-chiral objects can exhibit effective optical chiral response due to particular symmetry bre...
Chirality, the property of asymmetry, is ubiquitous in nature, observed in the handednesses of mol...
Optical circular dichroism (CD) is an important phenomenon in nanophotonics, that addresses top leve...
Hybridization of semiconductor nanostructures with asymmetric metallic layers offers new paths to ci...
Extrinsic or pseudo-chiral (meta)surfaces have an achiral structure, yet they can give rise to circu...
Chiral optical response is an inherent property of molecules and nanostructures, which cannot be sup...
We report on the extrinsic chirality behavior of GaAs-based NWs asymmetrically hybridized with Au. T...
We demonstrate the control of enhanced chiral field distribution at the surface of hybrid metallo-di...
Hybridized nanostructures composed by metals and dielectrics, semiconductors or organics offer new ...
We report on the extrinsic chirality behavior of GaAs-based NWs asymmetrically hybridized with Au. ...
Semiconductor nanostructures hybridized with metals have been known to offer new opportunities in no...
We demonstrate the control of enhanced chiral field distribution at the surface of hybrid metallo-di...
Nanomaterials can be specially designed to enhance optical chirality and their interaction with chir...
Plasmonic nanostructures with achiral, but asymmetric shapes can exhibit chiro-optical phenomena at ...
Optical circular dichroism (CD) is an important phenomenon in nanophotonics, that addresses top leve...
Even non-chiral objects can exhibit effective optical chiral response due to particular symmetry bre...
Chirality, the property of asymmetry, is ubiquitous in nature, observed in the handednesses of mol...
Optical circular dichroism (CD) is an important phenomenon in nanophotonics, that addresses top leve...
Hybridization of semiconductor nanostructures with asymmetric metallic layers offers new paths to ci...
Extrinsic or pseudo-chiral (meta)surfaces have an achiral structure, yet they can give rise to circu...