DocumentCode :
51865
Title :
Sub-20-Attosecond Timing Jitter Mode-Locked Fiber Lasers
Author :
Hyoji Kim ; Peng Qin ; Youjian Song ; Heewon Yang ; Junho Shin ; Chur Kim ; Kwangyun Jung ; Chingyue Wang ; Jungwon Kim
Author_Institution :
Sch. of Mech., Aerosp. & Syst. Eng., Korea Adv. Inst. of Sci. & Technol., Daejeon, South Korea
Volume :
20
Issue :
5
fYear :
2014
fDate :
Sept.-Oct. 2014
Firstpage :
260
Lastpage :
267
Abstract :
We demonstrate 14.3-attosecond timing jitter [integrated from 10 kHz to 94 MHz offset frequency] optical pulse trains from 188-MHz repetition-rate mode-locked Yb-fiber lasers. In order to minimize the timing jitter, we shorten the non-gain fiber length to shorten the pulsewidth and reduce excessive higher-order nonlinearity and nonlinear chirp in the fiber laser. The measured jitter spectrum is limited by the amplified spontaneous emission limited quantum noise in the 100 kHz-1 MHz offset frequency range, while it was limited by the relative intensity noise-converted jitter in the lower offset frequency range. This intrinsically low timing jitter enables sub-100-attosecond synchronization between the two mode-locked Yb-fiber lasers over the full Nyquist frequency with a modest 10-kHz locking bandwidth. The demonstrated performance is the lowest timing jitter measured from any free-running mode-locked fiber lasers, comparable to the performance of the lowest-jitter Ti:sapphire solid-state lasers.
Keywords :
fibre lasers; high-speed optical techniques; laser mode locking; laser noise; nonlinear optics; quantum noise; superradiance; synchronisation; timing jitter; ytterbium; 14.3-attosecond timing jitter optical pulse trains; Nyquist frequency; amplified spontaneous emission limited quantum noise; free-running mode-locked fiber lasers; frequency 10 kHz to 94 MHz; frequency 188 MHz; higher-order nonlinearity; jitter spectrum; locking bandwidth; nongain fiber length; nonlinear chirp; offset frequency; relative intensity noise-converted jitter; repetition-rate mode-locked Yb-fiber lasers; sub100-attosecond synchronization; sub20-attosecond timing jitter mode-locked fiber lasers; time 14.3 as; Fiber lasers; Frequency measurement; Laser mode locking; Laser noise; Measurement by laser beam; Timing jitter; Fiber lasers; laser mode locking; laser noise; noise measurement; phase locked loops; phase noise; timing jitter; ultrafast optics;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2014.2298454
Filename :
6704797
Link To Document :
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