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Integrated System-Level Electronic Design Automation (EDA) for Designing Plasmonic Nanocircuits
Journal article   Peer reviewed

Integrated System-Level Electronic Design Automation (EDA) for Designing Plasmonic Nanocircuits

Hong-Son Chu, Oka Kurniawan, Wenzu Zhang, Dongying Li and Er-Ping Li
IEEE transactions on nanotechnology, Vol.11(4), pp.731-738
01/07/2012

Abstract

Engineering Engineering, Electrical & Electronic Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Physical Sciences Physics Physics, Applied Science & Technology Science & Technology - Other Topics Technology
This paper proposes a system-level circuit simulation framework for nanoplasmonic devices, and presents an example of the simulation of a plasmonic nanocircuit. The electronic design automation environment provides an equivalent circuit model library for several plasmonic metal-insulator-metal-based devices. The accuracy of the equivalent models for the plasmonic nanocircuit library is verified by using full-wave simulations and analytical equations. These models are then used to design an ultracompact Mach-Zehnder plasmonic modulator. It is shown that the voltage required to achieve a pi phase shift V-pi in the modulator can be predicted by the simulator with reasonable accuracy. The optimized design of the modulator is also presented that reduces the value of V-pi according to the required specification.

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