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Gallium chiral nanoshaping for circular polarization handling

Academic Article
Publication Date:
2021
abstract:
In this work we report the local growth of ordered arrays of 3D core-shell chiral nanohelices based on plasmonic gallium metal. The structures can be engineered in a single step using focused ion beam induced deposition, where a Ga+ ion source is used to shape the metallic nanohelix core, while the dielectric precursor is dissociated to create dielectric shells. The solubility of gallium in the different investigated dielectric matrices controls the core-shell thickness ratio of the nanohelices. The chiral plasmonic behaviour of these gallium-based nanostructures is experimentally measured by circularly polarized light transmission through nanostructure arrays and compared with numerical simulations. Large chiroptical effects in the visible range are demonstrated due to the plasmonic effects arising from gallium nanoclusters in the core.
Iris type:
01.01 Articolo in rivista
Keywords:
core shell nanohelices; focused ion beam induced deposition; 3D nanostructuring; chirality; chiral photonics; circular polarization; chiroptical effects
List of contributors:
Manoccio, Mariachiara; Losurdo, Maria; Tasco, Vittorianna; Cuscuna', Massimo; Nicotra, Giuseppe; Esposito, Marco; Scuderi, Mario; Passaseo, ADRIANA GRAZIA
Authors of the University:
CUSCUNA' MASSIMO
ESPOSITO MARCO
NICOTRA GIUSEPPE
PASSASEO ADRIANA GRAZIA
SCUDERI MARIO
TASCO VITTORIANNA
Handle:
https://iris.cnr.it/handle/20.500.14243/426429
Published in:
MATERIALS HORIZONS
Journal
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