Versatile large-mode-area femtosecond laser-written Tm:ZBLAN glass chip lasers
Author(s) -
David G. Lancaster,
Simon Gross,
A. Fuerbach,
Heike EbendorffHeidepriem,
Tanya M. Monro,
Michael J. Withford
Publication year - 2012
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.20.027503
Subject(s) - zblan , optics , materials science , laser , cladding (metalworking) , slope efficiency , optoelectronics , laser beam quality , fiber laser , planar , femtosecond , waveguide , laser power scaling , laser beams , physics , computer graphics (images) , computer science , metallurgy
We report performance characteristics of a thulium doped ZBLAN waveguide laser that supports the largest fundamental modes reported in a rare-earth doped planar waveguide laser (to the best of our knowledge). The high mode quality of waveguides up to 45 um diameter (~1075 μm(2) mode-field area) is validated by a measured beam quality of M(2)~1.1 ± 0.1. Benefits of these large mode-areas are demonstrated by achieving 1.9 kW peak-power output Q-switched pulses. The 1.89 μm free-running cw laser produces 205 mW and achieves a 67% internal slope efficiency corresponding to a quantum efficiency of 161%. The 9 mm long planar chip developed for concept demonstration is rapidly fabricated by single-step optical processing, contains 15 depressed-cladding waveguides, and can operate in semi-monolithic or external cavity laser configurations.
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