Presentation + Paper
18 June 2024 Towards scalable heterogeneous integration of thin-film lithium niobate on silicon photonics using microtransfer printing
Tom Vanackere, Tom Vandekerckhove, Maximilien Billet, Ying Tan, Margot Niels, Tingting Zhai, Antonietta Parracino, Valeria Bonito, Jorik Withouck, Günther Roelkens, Dries Van Thourhout, Stéphane Clemmen, Bart Kuyken
Author Affiliations +
Abstract
Lithium niobate photonics provides a low-loss platform with great properties for high-speed modulation, wavelength conversion and quantum optics. Micro-transfer printing allows scalable integration with CMOS compatible silicon photonics technologies.
Conference Presentation
© (2024) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Tom Vanackere, Tom Vandekerckhove, Maximilien Billet, Ying Tan, Margot Niels, Tingting Zhai, Antonietta Parracino, Valeria Bonito, Jorik Withouck, Günther Roelkens, Dries Van Thourhout, Stéphane Clemmen, and Bart Kuyken "Towards scalable heterogeneous integration of thin-film lithium niobate on silicon photonics using microtransfer printing", Proc. SPIE 13012, Integrated Photonics Platforms III, 130120B (18 June 2024); https://doi.org/10.1117/12.3026043
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KEYWORDS
Printing

Silicon photonics

Lithium niobate

Thin films

Silicon nitride

Thin film devices

Modulators

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