Title :
Er-Doped Optical Waveguide Amplifiers in X-Cut Lithium Niobate by Selective Codiffusion
Author :
Salas-Montiel, Rafael ; Solmaz, Mehmet E. ; Eknoyan, Ohannes ; Madsen, Christi K.
Author_Institution :
Dept. of Electr. & Comput. Eng., Texas A&M Univ., College Station, TX, USA
fDate :
3/15/2010 12:00:00 AM
Abstract :
Positive small-signal net gain is demonstrated for the first time in optical waveguide amplifiers in X-cut Y-propagating lithium niobate by selective erbium (Er) and titanium (Ti) codiffusion. First, a planar codiffused sample was prepared for dynamic secondary ion mass spectrometry (SIMS) analysis. An erbium diffusion coefficient of 0.17 ??m2/h was calculated from the SIMS results and from the diffusion theory. Furthermore, the fabrication of optical waveguide amplifiers and the characterization methods are described. In a 3.5-cm-long optical waveguide amplifier, an optical small-signal net gain of 1.4 dB at 1531 nm was measured for the transverse-magnetic mode by optical pumping at 1488 nm with a launched pump power of 90 mW. The codiffusion process shows good net gain efficiency (dB/mW) and an advantage for the fabrication of integrated optical passive and active functions in lithium niobate.
Keywords :
erbium; integrated optics; lithium compounds; optical fibre amplifiers; codiffusion process; dynamic secondary ion mass spectrometry; integrated optical passive; optical pumping; optical waveguide amplifiers; planar codiffused sample; power 90 mW; selective codiffusion; small-signal net gain; transverse-magnetic mode; wavelength 1488 nm; wavelength 1531 nm; x-cut lithium niobate; Er diffusion; Er-doped waveguide amplifiers; Ti codiffusion; lithium niobate waveguides;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2009.2039126