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Light-Induced Field Enhancement in Nanoscale Systems from First-Principles: The Case of Polyacenes

Academic Article
Publication Date:
2014
abstract:
Using first-principles calculations we studied the electric field enhancement in polyacene molecules upon illumination. These molecules can be seen as a specific class of C-based (i.e., graphene-derived) nanostructures, recently proposed as alternative materials for plasmonics. We demonstrate that optical transitions may generate oscillating dipolar response charge, giving rise to an induced electric field near the molecule, which thus acts as a plasmon-like nanoantenna. While the field amplification in the vicinity of single acenes is rather small and decreases when the size of the system is increased, it may be selectively enhanced in the case of acene's assemblies. This paves the way for the design of more complex C-based architectures explicitly conceived to improve the amplification factor.
Iris type:
01.01 Articolo in rivista
Keywords:
field-enhancement; plasmonic nanoantenna; polyacenes; C-based nanostructures; TDDFT
List of contributors:
Molinari, Elisa; Bursi, Luca; Calzolari, Arrigo; Corni, Stefano
Authors of the University:
CALZOLARI ARRIGO
Handle:
https://iris.cnr.it/handle/20.500.14243/223607
Published in:
ACS PHOTONICS
Journal
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