
Open access
Author
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Date
2016-03-07Type
- Journal Article
Citations
Cited 13 times in
Web of Science
Cited 14 times in
Scopus
ETH Bibliography
yes
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Abstract
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale. Recent advances in near-field imaging have indicated the possibility for the complete reconstruction of both electric and magnetic components of the evanescent field. Here we study the electro-magnetic field structure of surface plasmon polariton waves propagating along subwavelength gold nanowires by performing phase- and polarization-resolved near-field microscopy in collection mode. By applying the optical reciprocity theorem, we describe the signal collected by the probe as an overlap integral of the nanowire’s evanescent field and the probe’s response function. As a result, we find that the probe’s sensitivity to the magnetic field is approximately equal to its sensitivity to the electric field. Through rigorous modeling of the nanowire mode as well as the aperture probe response function, we obtain a good agreement between experimentally measured signals and a numerical model. Our findings provide a better understanding of aperture-based near-field imaging of the nanoscopic plasmonic and photonic structures and are helpful for the interpretation of future near-field experiments. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000114193Publication status
publishedExternal links
Journal / series
Scientific ReportsVolume
Pages / Article No.
Publisher
Nature Publishing GroupSubject
Nanoscience and technology; MicroscopyMore
Show all metadata
Citations
Cited 13 times in
Web of Science
Cited 14 times in
Scopus
ETH Bibliography
yes
Altmetrics