arXiv · 2001.01709
Second Harmonic Generation Enabled by Longitudinal Electric Field Components in Photonic Wire Waveguides
Abstract
We investigate type I second harmonic generation in III-V semiconductor wire waveguides aligned with a crystallographic axis. In this direction, because of the single nonzero tensor element of III-V semiconductors, only frequency conversion by mixing with the longitudinal components of the optical fields is allowed. We experimentally study the impact of the propagation direction on the conversion efficiency and confirm the role played by the longitudinal components through the excitation of an antisymmetric second harmonic higher order mode.
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Nicolas Poulvellarie, Utsav Dave, Koen Alexander, Charles Ciret, Maximilien Billet, Carlos Mas Arabi, Fabrice Raineri, Sylvain Combrie, Alfredo De Rossi, Gunther Roelkens, Simon-Pierre Gorza, Bart Kuyken, Francois Leo. 2020-01-06. Second Harmonic Generation Enabled by Longitudinal Electric Field Components in Photonic Wire Waveguides. https://doi.org/10.1103/physreva.102.023521
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