DocumentCode :
1458091
Title :
New Characterization Technique for Femtosecond Laser Written Waveguides in Yb/Er-Codoped Glass
Author :
Vallés, Juan A. ; Ferrer, Andrés ; Sánchez-Martín, José A. ; De la Cruz, Alexandro Ruíz ; Rebolledo, Miguel Ángel ; Solis, Javier
Author_Institution :
Dept. of Appl. Phys.-I3A, Univ. de Zaragoza, Zaragoza, Spain
Volume :
46
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
996
Lastpage :
1002
Abstract :
We have developed a procedure for the complete characterization of femtosecond-laser written Er/Yb-codoped glass waveguides. The procedure is based on precise measurements of both pump and 1.5 ¿m -band output powers when the waveguide is diode-laser pumped at 980 nm. The dependence of these optical powers on the input pump power is fitted to the results derived from a detailed numerical model of the propagation of the optical powers inside the waveguide. As a result of the fitting procedure the 980-nm absorption cross-section of the Yb3+ ion and the coefficients for both Yb3+ ¿ Er3+ non-radiative energy-transfer and Er3+ ion upconversion are obtained. Moreover, the transmission losses for both pump and signal wavelengths and the coupling losses at each waveguide end are also determined. The model takes into account that the fs-laser writing process may induce transmission losses with a spectral dependence (¿(¿)) departing from the Rayleigh scattering scaling law ( ¿-4) and is valid both for single mode and multimode propagation. It has been tested in fs-laser written waveguides produced under non-optimal conditions in order to test the robustness of the method, providing excellent results.
Keywords :
Rayleigh scattering; doping; erbium; high-speed optical techniques; laser beam machining; laser beams; light absorption; light propagation; optical couplers; optical fabrication; optical glass; optical losses; optical waveguides; phosphate glasses; ytterbium; P2O5-Jk-Jk:Yb,Er; Rayleigh scattering; coupling losses; diode-laser pumping; femtosecond laser written waveguides; glass waveguides; ion upconversion; light absorption; light propagation; multimode propagation; nonradiative energy-transfer; single mode propagation; transmission losses; wavelength 1.5 mum; wavelength 980 nm; Erbium; Glass; Optical pumping; Optical scattering; Optical waveguides; Particle beam optics; Propagation losses; Testing; Ultrafast optics; Waveguide lasers; Erbium; Rayleigh scattering; integrated optics; laser materials-processing applications; optical waveguides; ytterbium;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2010.2042569
Filename :
5440041
Link To Document :
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