Ridge Waveguide Structures in Magnesium-Doped Lithium Niobate

TBMG-10141

06/01/2011

Abstract
Content

This work proposes to establish the feasibility of fabricating isolated ridge waveguides in 5% MgO:LN. Ridge waveguides in MgO:LN will significantly improve power handling and conversion efficiency, increase photonic component integration, and be well suited to space-based applications. The key innovation in this effort is to combine recently available large, high-photorefractive-damage-threshold, z-cut 5% MgO:LN with novel ridge fabrication techniques to achieve high-optical power, low-cost, high-volume manufacturing of frequency conversion structures. The proposed ridge waveguide structure should maintain the characteristics of the periodically poled bulk substrate, allowing for the efficient frequency conversion typical of waveguides and the high optical damage threshold and long lifetimes typical of the 5% doped bulk substrate. The low cost and large area of 5% MgO:LN wafers, and the improved performance of the proposed ridge waveguide structure, will enhance existing measurement capabilities as well as reduce the resources required to achieve high-performance specifications.

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Citation
"Ridge Waveguide Structures in Magnesium-Doped Lithium Niobate," Mobility Engineering, June 1, 2011.
Additional Details
Publisher
Published
Jun 1, 2011
Product Code
TBMG-10141
Content Type
Magazine Article
Language
English