Title :
Emission and Absorption Cross Sections of Photorefractive-Damage-Resistant Locally Er-Mg-Doped Near-Stoichiometric
Strip Waveg
Author :
Zhang, De-Long ; Xu, Shi-Yu ; Hua, Ping-Rang ; Yu, Dao-Yin ; Pun, Edwin Yue-Bun
Author_Institution :
Sch. of Preci sion Instrum. & Optoelectron. Eng., Tianjin Univ., Tianjin, China
fDate :
4/1/2011 12:00:00 AM
Abstract :
We have measured the polarized visible and near-infrared, and unpolarized mid-infrared (2.7 μm) emission spectra of photorefractive-damage-resistant locally Er-Mg-doped near-stoichiometric (NS) Ti:Mg:Er:LiNbO3 strip waveguide, fabricated on an X-cut initially congruent LiNbO3 substrate in sequence by local Er doping in air, Mg-Ti pre-diffusion in wet O2 and post Li-rich vapor transport equilibration treatment. From the measured emission spectra, the emission and absorption cross section spectra were calculated based upon McCumber theory. The spectroscopic features are discussed in comparison with the spectra recorded from the area outside the waveguide, and with the previously reported results of bulk-doped NS Er:Mg:LiNbO3 crystals and congruent Er:LiNbO3 bulk material or Ti:Er:LiNbO3 waveguide structure. The results show that the spectra of the NS waveguide are traditional and reveal small differences from those spectra outside the waveguide in spectral shape, polarization dependence, as well as cross section values. In contrast, the cross section values of the NS waveguide show considerable differences from those of bulk-doped NS material and congruent bulk material or waveguide structure. The 552, 673, 996, and 1531 nm emission lifetimes of the Er3+ ions outside the waveguide were also measured, and found to be comparable to the results of the bulk-doped NS crystal and the congruent bulk material or waveguide structure.
Keywords :
diffusion; erbium; infrared spectra; light absorption; lithium compounds; magnesium; optical fabrication; optical waveguides; photorefractive effect; titanium; visible spectra; Er doping; LiNbO3:Ti:Mg:Er; McCumber theory; Mg-Ti pre-diffusion; absorption cross sections; bulk-doped NS crystal; emission cross sections; emission lifetimes; mid-infrared emission spectra; near-infrared emission spectra; near-stoichiometric strip waveguide; photorefractive-damage-resistant; polarization dependence; spectral shape; visible emission spectra; wavelength 1531 nm; wavelength 552 nm; wavelength 673 nm; wavelength 996 nm; Absorption; Erbium; Ions; Materials; Optical pumping; Optical waveguides; Strips; Emission and absorption cross sections; nearstoichiometric ${rm Ti}:{rm Mg}:{rm Er}:{rm LiNbO}_{3}$ strip waveguide; photorefractive effect;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2010.2093870