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  4. Robust meta-surface designs for ultra-high reflectivity in precision interferometry
 
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2025
Conference Paper
Title

Robust meta-surface designs for ultra-high reflectivity in precision interferometry

Abstract
Metasurfaces enable precise light manipulation, like fostering reflections close to unity, through resonance mechanisms. While traditional Bragg mirrors enable very high reflectivity they limit the achievable thermal noise. Meta-material-mirrors (MMM) can overcome the noise limitations but suffer from limited reflectivity. This trade-off is crucial for next-generation cryogenic gravitational wave detectors, such as the Einstein Telescope, which need high reflectivity and low thermal noise test mass coatings to achieve dramatic sensitivity. Hence, we are proposing a new combined design unifying the advantages from both approaches-composed of an MMM, a Fabry- Pérot spacer, and a Bragg mirror-achieving extremely high reflectance and low thermal noise. We are evaluating different 1D and 2D design approaches to achieve MMM robust to fabrication tolerances while offering broad, high reflection at 1550 nm. A key focus is on bandwidth, manufacturability, and thermal noise. This systematic analysis provides a pathway to promising MMM for production via e.g. character projection electron beam lithography, paving the way for high-performance mirrors in gravitational wave astronomy and beyond.
Author(s)
Kranhold, Christian
Friedrich-Schiller-Universität Jena
Gaedtke, Mika
Technische Universität Braunschweig
Walther, Markus
Friedrich-Schiller-Universität Jena
Eilenberger, Falk  
Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF  
Kroker, Stefanie
Technische Universität Braunschweig
Siefke, Thomas
Friedrich-Schiller-Universität Jena
Mainwork
EOS Annual Meeting, EOSAM 2025  
Conference
European Optical Society (EOS Annual Meeting) 2025  
Open Access
File(s)
Download (1.37 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1051/epjconf/202533505015
10.24406/publica-8413
Additional link
Full text
Language
English
Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF  
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