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Updated: Jun 11, 2026

Evaluating Plasmonic Transport in Current-carrying Silver Nanowires
Published on: December 11, 2013
Plasmonic nanograting tip design for high power throughput near-field scanning aperture probe
Yuyan Wang1, Yu-Yen Huang, Xiaojing Zhang
1Department of Biomedical Engineering, University of Texas at Austin, 1 University Station, C0800, Austin, Texas 78712, USA. yuyan.wang@engr.utexas.edu
Abstract:
We design nanogratings consisting of concentric plasmonic resonance grooves on the metallic sidewalls of near-field scanning probe aperture to increase the power throughput without losing the imaging resolution. Nanograting tip design involves choosing the proper pitch length and the cut location of grooves. Four different nanograting designs are evaluated, as compared with standard single aperture pyramidal near-field scanning probe without grating patterns. We show that, by adding nano-grooves at the location of electromagnetic field intensity-maximum along interface and with the pitch period matching the surface plasmon wavelength, the power throughput can be greatly increased by at least a factor of 530 at 405nm UV wavelength with 100nm diameter aperture probe.

