| Literature DB >> 20639942 |
Svetlana V Boriskina1, Sylvanus Y K Lee, Jason J Amsden, Fiorenzo G Omenetto, Luca Dal Negro.
Abstract
Periodic gratings and photonic bandgap structures have been studied for decades in optical technologies. The translational invariance of periodic gratings gives rise to well-known angular and frequency filtering of the incident radiation resulting in well-defined scattered colors in response to broadband illumination. Here, we demonstrate the formation of highly complex structural color patterns, or colorimetric fingerprints, in two-dimensional (2D) deterministic aperiodic gratings using dark field scattering microscopy. The origin of colorimetric fingerprints is explained by rigorous full-wave numerical simulations based on the generalized Mie theory. We show that unlike periodic gratings, aperiodic nanopatterned surfaces feature a broadband frequency response with wide angular intensity distributions governed by the distinctive Fourier properties of the aperiodic structures. Finally, we will discuss a range of potential applications of colorimetric fingerprints for optical sensing and spectroscopy.Year: 2010 PMID: 20639942 DOI: 10.1364/OE.18.014568
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894