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Authors: L. Reis, M. Billet, T. Vandekerckhove, F. Raineri, I. Sagnes, K. Pantzas, G. Beaudoin, G. Roelkens, F. Leo, B. Kuyken
Title: Large size gallium phosphide micro-transfer printing for integrated nonlinear photonics
Format: International Conference Proceedings
Publication date: 10/2023
Journal/Conference/Book: Frontiers in Optics + Laser Science 2023 (FiO/LS)
Volume(Issue): p.paper FTh3E.6 (2 pages)
Location: Tacoma, United States
DOI: 10.1364/FIO.2023.FTh3E.6
Citations: 1 (Dimensions.ai - last update: 12/5/2024)
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Abstract

Gallium Phosphide has unique material properties suitable for telecom and mid-infrared applications. Using micro-transfer printing, we demonstrate a low-loss Gallium Phosphide-on-insulator integrated platform with an arbitrarily large coupon area enabling the generation of on-chip supercontinuum generation.

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