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Preprint article ยท Journal article

Resonant-tunnelling-assisted crossing for subwavelenght plasmonic slot waveguides

In Optics Express โ€” 2008, Volume 16, Issue 19, pp. 14997-15005
From

Structured Electromagnetic Materials, Department of Photonics Engineering, Technical University of Denmark1

Department of Photonics Engineering, Technical University of Denmark2

We theoretically investigate properties of crossing for two perpendicular subwavelength plasmonic slot waveguides. In terms of symmetry consideration and resonant-tunnelling effect, we design compact cavity-based crossing structures for nanoplasmonic waveguides. Our results show that the crosstalk is practically eliminated and the throughput reaches the unity on resonance.

Simulation results are in agreement with those from coupled-mode theory. Taking the material loss into account, the symmetry properties of the modes are preserved and the crosstalk remains suppressed, while the throughput is naturally lowered. Our results may open a way to construct nanoscale crossings for high-density nanoplasmonic integration circuits.

Language: English
Publisher: The Optical Society
Year: 2008
Pages: 14997-15005
ISSN: 10944087
Types: Preprint article and Journal article
DOI: 10.1364/OE.16.014997
ORCIDs: Xiao, Sanshui and Mortensen, Niels Asger

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