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Imaging the Localized Plasmon Resonance Modes in Graphene Nanoribbons
We report a nanoinfrared
(IR) imaging study of the localized plasmon
resonance modes of graphene nanoribbons (GNRs) using a scattering-type
scanning near-field optical microscope (s-SNOM). By comparing the
imaging data of GNRs that are aligned parallel and perpendicular to
the in-plane component of the excitation laser field, we observed
symmetric and asymmetric plasmonic interference fringes, respectively.
Theoretical analysis indicates that the asymmetric fringes are formed
due to the interplay between the localized surface plasmon resonance
(SPR) mode excited by the GNRs and the propagative surface plasmon
polariton (SPP) mode launched by the s-SNOM tip. With rigorous simulations,
we reproduce the observed fringe patterns and address quantitatively
the role of the s-SNOM tip on both the SPR and SPP modes. Furthermore,
we have seen real-space signatures of both the dipole and higher-order
SPR modes by varying the ribbon width
Correction: The Influence of Age and Sex on Genetic Associations with Adult Body Size and Shape: A Large-Scale Genome-Wide Interaction Study.
The arcOGEN Consortium should be listed as an author of this article. They contributed to the genome-wide association study results presented in this work. They should be listed in the author byline at position 292 and affiliated with The Arthritis Research UK Osteoarthritis Genetics Consortium. They should also be included in the footnote designating consortia which is underneath the author affiliation list in the PDF version of the article, and in the S2 Text. Please view the correct S2 Text below, containing correct consortia members. S2 Text. Consortia members and extended acknowledgments.
https://doi.org/10.1371/journal.pgen.1006166.s001
(DOCX) [This corrects the article DOI: 10.1371/journal.pgen.1005378.]