Optical performance of large-area crystalline coatings

Given their excellent optical and mechanical properties, substrate-transferred crystalline coatings are an exciting alternative to amorphous multilayers for applications in precision interferometry. The high mechanical quality factor of these single-crystal interference coatings reduces the limiting...

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Veröffentlicht in:Opt.express 2018-03, Vol.26 (5), p.6114-6125
Hauptverfasser: Marchiò, Manuel, Flaminio, Raffaele, Pinard, Laurent, Forest, Daniéle, Deutsch, Christoph, Heu, Paula, Follman, David, Cole, Garrett D
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Sprache:eng
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Zusammenfassung:Given their excellent optical and mechanical properties, substrate-transferred crystalline coatings are an exciting alternative to amorphous multilayers for applications in precision interferometry. The high mechanical quality factor of these single-crystal interference coatings reduces the limiting thermal noise in precision optical instruments such as reference cavities for narrow-linewidth laser systems and interferometric gravitational wave detectors. In this manuscript, we explore the optical performance of GaAs/AlGaAs crystalline coatings transferred to 50.8-mm (2-inch) diameter fused silica and sapphire substrates. We present results for the transmission, scattering, absorption, and surface quality of these prototype samples including the defect density and micro-roughness. These novel coatings exhibit optical performance on par with state-of-the-art dielectric structures, encouraging further work focused on the fabrication of larger optics using this technique.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.26.006114