DocumentCode :
969973
Title :
Compact femtosecond lasers based on novel multipass cavities
Author :
Sennaroglu, Alphan ; Kowalevicz, Andrew M., Jr. ; Ippen, Erich P. ; Fujimoto, James G.
Volume :
40
Issue :
5
fYear :
2004
fDate :
5/1/2004 12:00:00 AM
Firstpage :
519
Lastpage :
528
Abstract :
This paper provides a comprehensive description of the design of compact femtosecond solid-state lasers that are based on novel multipass cavity (MPC) configurations to extend the resonator length. Of special importance are the q-preserving MPCs, which leave invariant the original spotsize distribution and Kerr lens mode-locking point of the short cavity. The general design guidelines of q-preserving MPCs are first reviewed and a novel configuration is proposed for the case where the MPC consists of notch mirrors. A class of non-q-preserving compact cavities is also analyzed and conditions needed to minimize the deviation from the q-preserving configuration are discussed. The design and performance of a q-preserving and a non-q-preserving mode-locked Ti:Al2O3 laser are then described as examples. These compact oscillators measuring only 30 cm × 45 cm could produce pulses as short as 19 fs at a repetition rate of around 31 MHz. Up to ∼3.6 nJ of pulse energy could be obtained with only ∼1.5 W of pump power. Finally, two-mirror MPC geometries are examined to investigate the limits of compactness and energy scaling.
Keywords :
high-speed optical techniques; laser cavity resonators; laser mode locking; optical Kerr effect; solid lasers; titanium; 19 fs; 31 MHz; Al2O3:Ti; Kerr lens mode-locking point; compact femtosecond lasers; compact femtosecond solid-state lasers; non-q-preserving mode-locked Ti:Al2O3 laser; notch mirrors; novel multipass cavities; novel multipass cavity configurations; q-preserving multipass cavities; resonator length; short cavity; spotsize distribution; two-mirror MPC geometry; Geometry; Guidelines; Laser mode locking; Lenses; Mirrors; Optical design; Oscillators; Pulse measurements; Pump lasers; Solid lasers;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2004.826438
Filename :
1291711
Link To Document :
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