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Low loss mid-infrared ZBLAN waveguides for future astronomical applications
Author(s) -
Simon Gross,
Nemanja Jovanović,
Adam Sharp,
Michael Ireland,
Jon Lawrence,
Michael J. Withford
Publication year - 2015
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.23.007946
Subject(s) - zblan , optics , astronomical interferometer , photonics , interferometry , exoplanet , wavelength , infrared , femtosecond , cladding (metalworking) , laser , planet , optoelectronics , physics , materials science , fiber laser , astronomy , metallurgy
Photonic technologies will be at the heart of future terrestrial planet hunting interferometers. In particular the mid-infrared spectral region between 3.5 - 4.2 μm is the ideal window for hunting for young extra-solar planets, since the planet is still hot from its formation and thus offers a favorable contrast with respect to the parent star compared to other spectral regions. This paper demonstrates two basic photonic building blocks of such an instrument, namely single-mode waveguides with propagation losses as low as 0.29±0.03 dB/cm at a wavelength of 4 μm as well as directional couplers with a constant splitting ratio across a broad wavelength band of 500 nm. The devices are based on depressed cladding waveguides inscribed into ZBLAN glass using the femtosecond laser direct-write technique. This demonstration is the first stepping stone towards the realization of a high transmission mid-infrared nulling interferometer.

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