Title :
Laser performance and spectroscopic analysis of optically written channel waveguides in neodymium-doped gallium lanthanum sulphide glass
Author :
Mairaj, Arshad K. ; Chardon, Alain M. ; Shepherd, David P. ; Hewak, Daniel W.
Author_Institution :
Optoelectron. Res. Centre, Southampton Univ., UK
Abstract :
We present a spectroscopic analysis and laser characterization of optically written waveguides in neodymium-doped gallium lanthanum sulphide (Nd3+-Ga:La:S) chalcogenide glass. Uniform channel waveguides were fabricated in Nd3+-Ga:La:S by exposure to radiation from a focused UV-laser beam (λ=244 nm), producing a refractive index change ▵n≈+10-3. The observed laser performance and fluorescence decay were in good agreement with values calculated from a spectroscopic analysis of 85 μs for the 4F32/ lifetime and 5.9×10-20 cm2 for the emission cross section at 1075 nm. Low threshold laser operation with emission at 1075 nm and a slope efficiency of 17% is demonstrated. The active device is spatially single mode and exhibits up to 8.6 mW of output power and propagation losses of <0.5 dBcm-1. Waveguide fabrication, photoinduced effects, and optical characterization in terms of spectroscopy, laser performance, and device attenuation are discussed.
Keywords :
fluorescence; laser modes; laser transitions; neodymium; optical glass; optical waveguides; refractive index; solid lasers; stimulated emission; waveguide lasers; 1075 nm; 8.6 mW; 85 mus; Ga-La-S:Nd3+; Nd3+:Ga-La-S glass; active device; device attenuation; fluorescence decay; focused UV-laser beam; laser performance; low threshold laser operation; neodymium-doped gallium lanthanum sulphide glass; optical characterization; optically written channel waveguides; output power; photoinduced effects; propagation losses; refractive index change; single mode; spectroscopic analysis; uniform channel waveguides; Glass; Lanthanum; Neodymium; Optical attenuators; Optical refraction; Optical variables control; Optical waveguides; Performance analysis; Spectroscopy; Waveguide lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2002.806672