Paper
28 July 2008 Rapid prototyping of integrated sol-gel devices for astronomical interferometry
A. Ghasempour, D. Alexandre, C. Brites, P. J. Moreira, F. Reynaud, P. V. S. Marques, A. M. P. Leite, P. J. V. Garcia
Author Affiliations +
Abstract
Integrated optics is a mature technology with standard applications to telecommunications. Since the pioneering work of Berger et al. 1999 beam combiners for optical interferometry have been built using this technology. Classical integrated optics device production is very expensive and time consuming. The rapid production of devices using hybrid sol-gel materials in conjunction with UV laser direct writing techniques allows overcoming these limitations. In this paper this technology is tested for astronomical applications. We report on the design, fabrication and characterization of multiaxial two beam combiners and a coaxial beam combiner for astronomical interferometry. Different multiaxial two beam combiner designs were tested and high contrast (better than 90%) was obtained with a 1.3 μm laser diode and with an SLD ( λ0 = 1.26 μm, FWHM of 60 nm). High contrast fringes were produced with 1.3 μm laser diode using the coaxial two beam combiner. These results show that hybrid sol-gel techniques produce devices with high quality, allowing the rapid prototyping of new designs and concepts for astronomy.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
A. Ghasempour, D. Alexandre, C. Brites, P. J. Moreira, F. Reynaud, P. V. S. Marques, A. M. P. Leite, and P. J. V. Garcia "Rapid prototyping of integrated sol-gel devices for astronomical interferometry", Proc. SPIE 7013, Optical and Infrared Interferometry, 701317 (28 July 2008); https://doi.org/10.1117/12.788845
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KEYWORDS
Sol-gels

Optical fibers

Integrated optics

Waveguides

Astronomy

Computer aided design

Semiconductor lasers

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