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Highly efficient femtosecond pulse stretching by tailoring cavity dispersion in erbium fiber lasers with an intracavity short-pass edge filter
Journal article   Open access   Peer reviewed

Highly efficient femtosecond pulse stretching by tailoring cavity dispersion in erbium fiber lasers with an intracavity short-pass edge filter

Nan-Kuang Chen, Feng-Zhou Liu, Hsiu-Po Chuang, Yinchieh Lai, Shang-Da Yang, Jim-Wein Lin, Shien-Kuei Liaw, Yu-Chung Chang, Chen-Bin Huang and Sien Chi
Optics Express, Vol.19(17), pp.15879-15884
15/08/2011

Abstract

We demonstrate highly efficient pulse stretching in Er 3+ -doped femtosecond mode-locked fiber lasers by tailoring cavity dispersion using an intracavity short-pass edge filter. The cavity dispersion is preset at around zero to obtain the shortest pulsewidth. When the cutoff wavelength of the short-pass edge filter is thermo-optically tuned to overlap the constituting spectral components of mode-locked pulses, large negative waveguide dispersion is introduced by the steep cutoff slope and the total cavity dispersion is moved to normal dispersion regime to broaden the pulsewidth. The time-bandwidth product of the mode-locked pulse increases with the decreasing temperature at the optical liquid surrounding the short-pass edge filter. Pulse stretch ratio of 3.53 (623.8fs/176.8fs) can be efficiently achieved under a temperature variation of 4°C. © 2011 Optical Society of America.
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https://doi.org/10.1364/OE.19.015879View
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