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Georgios Veronis

Researcher at Louisiana State University

Publications -  165
Citations -  6174

Georgios Veronis is an academic researcher from Louisiana State University. The author has contributed to research in topics: Dielectric & Waveguide. The author has an hindex of 35, co-authored 160 publications receiving 5576 citations. Previous affiliations of Georgios Veronis include National Technical University of Athens & Stanford University.

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Bends and splitters in metal-dielectric-metal subwavelength plasmonic waveguides

TL;DR: In this article, the bends and splitters with no additional loss over a very wide frequency range were designed for metal-dielectric-metal waveguides with center layer thickness small compared to the wavelength.
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One-way electromagnetic waveguide formed at the interface between a plasmonic metal under a static magnetic field and a photonic crystal.

TL;DR: It is demonstrated theoretically the existence of one-way electromagnetic modes in a waveguide formed between a semi-infinite photonic crystal structure and a Semi-Infinite metal region under a static magnetic field.
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Modes of Subwavelength Plasmonic Slot Waveguides

TL;DR: In this paper, the authors investigated the properties of the modes that are supported by 3-D subwavelength plasmonic slot waveguides and showed that the fundamental mode that is supported by a symmetric PLASM waveguide, which is composed of a sub-wavelength slot in a thin metallic film embedded in an infinite homogeneous dielectric, is always a bound mode for any combination of operating wavelength and waveguide parameters.
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Monte Carlo model for analysis of thermal runaway electrons in streamer tips in transient luminous events and streamer zones of lightning leaders

TL;DR: In this article, a Monte Carlo model was proposed to describe electron dynamics in air, including the thermal runaway phenomena, under the influence of an external electric field of an arbitrary strength.
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Guided subwavelength plasmonic mode supported by a slot in a thin metal film

TL;DR: It is demonstrated the existence of a bound optical mode supported by a slot in a thin metallic film deposited on a substrate, with slot dimensions much smaller than the wavelength, with group velocity close to the speed of light in the substrate.