Title :
Advanced Ti:Er:LiNbO/sub 3/ waveguide lasers
Author :
Becker, C. ; Oesselke, T. ; Pandavenes, J. ; Ricken, R. ; Rochhausen, K. ; Schreiber, G. ; Sohler, W. ; Suche, H. ; Wessel, R. ; Balsamo, S. ; Montrosset, I. ; Sciancalepore, D.
Author_Institution :
Univ. Gesamthochschule Paderborn, Germany
Abstract :
This paper reviews the latest developments of diode-pumped Ti,Er:LiNbO/sub 3/ waveguide lasers emitting at wavelengths around 1.5 /spl mu/m. In particular, harmonically mode-locked lasers, Q-switched lasers, distributed Bragg reflector (DBR)-lasers, and self-frequency doubling lasers are discussed in detail. Supermode stabilized mode-locked lasers have been realized using a coupled cavity concept; a side mode suppression ratio of 55 dB has been achieved at 10-GHz pulse repetition rate with almost transform limited pulses. Q-switched lasers with a high extinction ratio (>25 dB) intracavity electrooptic switch emitted pulses with a peak power level up to 2.5 kW and a pulsewidth down to 2.1 ns at 1-kHz repetition frequency. Numerical simulations for both lasers are in a good, almost quantitative agreement with experimental results. A DBR-laser of narrow linewidth (/spl ap/3 GHz) with a permanent (fixed) photorefractive grating and 5 mW output power has been realized. Self frequency doubling lasers have been fabricated with a periodic microdomain structure inside an Er-doped laser cavity; simultaneous emission at the fundamental wavelength, 1531 nm, and at the second harmonic wavelength, 765 nm, has been obtained.
Keywords :
Q-switching; distributed Bragg reflector lasers; erbium; laser mode locking; laser modes; laser stability; laser transitions; lithium compounds; optical pumping; solid lasers; titanium; waveguide lasers; 1531 nm; 2.1 ns; 2.5 kW; 765 nm; DBR lasers; Er-doped laser cavity; GHz pulse repetition rate; LiNbO/sub 3/:Ti,Er; Q-switched lasers; coupled cavity concept; diode-pumped Ti,Er:LiNbO/sub 3/ waveguide lasers; distributed Bragg reflector lasers; harmonically mode-locked lasers; intracavity electrooptic switch; kHz repetition frequency; laser transitions; mW output power; microdomain structure; narrow linewidth; peak power level; photorefractive grating; reviews; self frequency doubling lasers; self-frequency doubling lasers; side mode suppression ratio; simultaneous emission; supermode stabilized mode-locked lasers; transform limited pulses; Diodes; Distributed Bragg reflectors; Frequency; Laser mode locking; Laser stability; Lasers and electrooptics; Optical coupling; Optical pulses; Switches; Waveguide lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/2944.826878