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Low-loss operation of silicon-on-insulator integrated components at 2.6-2.7 µm.

作者信息

Tuorila Heidi, Viheriälä Jukka, Cherci Matteo, Harjanne Mikko, Marin Yisbel, Ojanen Samu-Pekka, Karioja Pentti, Guina Mircea

出版信息

Opt Express. 2023 Nov 6;31(23):39039-39048. doi: 10.1364/OE.497645.

DOI:10.1364/OE.497645
PMID:38017993
Abstract

Development of mid-infrared photonics is gaining attention, driven by a multitude of sensing applications requiring increasingly compact and cost-effective photonics systems. To this end, low-loss operation of µm-scale silicon-on-insulator photonic integration elements is demonstrated for the 2.6-2.7 µm wavelength region. The platform utilizes the 3 µm thick silicon core layer technology enabling demonstration of low-loss and low birefringence waveguides. Measurements of record low single mode waveguide propagation losses of 0.56 ± 0.09 dB/cm and bend losses <0.08 dB for various miniaturized bend geometries are presented and validated by simulation. Furthermore, a wavelength filter based on echelle grating that allows to select several operating channels within the 2.64-2.7 µm band, with a linewidth of ∼1.56 nm for each channel is presented.

摘要

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