Paper
18 March 2013 Fluoride waveguide lasers grown by liquid phase epitaxy
Florent Starecki, Western Bolaños, Gurvan Brasse, Abdelmjid Benayad, Jean-Louis Doualan, Alain Braud, Richard Moncorgé, Patrice Camy
Author Affiliations +
Abstract
High optical quality rare-earth-doped LiYF4 (YLF) epitaxial layers were grown on pure YLF substrates by liquid phase epitaxy (LPE). Thulium, praseodymium and ytterbium YLF crystalline waveguides co-doped with gadolinium and/or lutetium were obtained. Spectroscopic and optical characterization of these rare-earth doped waveguides are reported. Internal propagation losses as low as 0.11 dB/cm were measured on the Tm:YLF waveguide and the overall spectroscopic characteristics of the epitaxial layers were found to be comparable to bulk crystals. Laser operation was achieved at 1.87 μm in the Tm3+ doped YLF planar waveguide with a very good efficiency of 76% with respect to the pump power. Lasing was also demonstrated in a Pr3+ doped YLF waveguide in the red and orange regions and in a Yb3+:YLF planar waveguide at 1020 nm and 994 nm.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Florent Starecki, Western Bolaños, Gurvan Brasse, Abdelmjid Benayad, Jean-Louis Doualan, Alain Braud, Richard Moncorgé, and Patrice Camy "Fluoride waveguide lasers grown by liquid phase epitaxy", Proc. SPIE 8599, Solid State Lasers XXII: Technology and Devices, 859902 (18 March 2013); https://doi.org/10.1117/12.2012510
Lens.org Logo
CITATIONS
Cited by 2 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Waveguides

Crystals

Liquid phase epitaxy

Planar waveguides

Spectroscopy

Absorption

Waveguide lasers

RELATED CONTENT

2-µm waveguide lasers in monoclinic double tungstates
Proceedings of SPIE (March 06 2013)
Single and double energy N+ irradiated planar...
Proceedings of SPIE (March 06 2013)
Dielectric waveguide lasers
Proceedings of SPIE (August 09 2007)
Waveguide lasers in KY(WO4)2 and Ti:sapphire
Proceedings of SPIE (December 19 2008)

Back to Top