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  • Title: Mid-infrared characterization of solution-processed As2S3 chalcogenide glass waveguides.
    Author: Tsay C, Mujagić E, Madsen CK, Gmachl CF, Arnold CB.
    Journal: Opt Express; 2010 Jul 19; 18(15):15523-30. PubMed ID: 20720932.
    Abstract:
    An etch-free and cost-effective deposition and patterning method to fabricate mid-infrared chalcogenide glass waveguides for chemical sensing applications is introduced. As(2)S(3) raised strip optical waveguides are produced by casting a liquid solution of As(2)S(3) glass in capillary channel molds formed by soft lithography. Mid-IR transmission is characterized by coupling the output of a quantum cascade (QC) laser (lambda = 4.8 microm) into the 40 microm wide by 10 microm thick multi-mode waveguides. Loss as low as 4.5 dB/cm is achieved using suitable substrate materials and post-processing. Optical absorption and surface roughness measurements indicate that the solution-processed films are of sufficient quality for optical devices and are promising for further development of waveguide-based mid-IR elements.
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