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Low repetition-rate all-normal-dispersion mode locking laser based on SESAM

In this paper, we describe a compact all-fiber-path picosecond pulse based on Ytterbium doped fiber oscillator. A home-made novel SESAM mounted on fiber is reported, by which stable mode locking is obtained. We observe the appearance of multiple pulsing, and give an explanation with regard to establ...

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Main Authors: Fuqiang Lian, Zhongwei Fan, Gang Niu
Format: Conference Proceeding
Language:English
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Zhongwei Fan
Gang Niu
description In this paper, we describe a compact all-fiber-path picosecond pulse based on Ytterbium doped fiber oscillator. A home-made novel SESAM mounted on fiber is reported, by which stable mode locking is obtained. We observe the appearance of multiple pulsing, and give an explanation with regard to establishment of multiple pulsing. The fiber laser generates 15 ps pulse trains without a dispersive delay line or anomalous dispersion in the cavity. Mode locking pulse with 17 MHz low repetition-rate was produced, with 10 mW average output power at 1064 nm.
doi_str_mv 10.1109/ICEOE.2011.6013249
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identifier ISBN: 1612842755
ispartof Proceedings of 2011 International Conference on Electronics and Optoelectronics, 2011, Vol.2, p.V2-332-V2-334
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subjects All-normal-Dispersion
Chirp
Collimators
fiber laser
harmonic mode locking
low repetition-rate
mode locking
multiple pulsing
Optical fiber dispersion
Optical fiber polarization
SESAM
Wavelength division multiplexing
Ytterbium
title Low repetition-rate all-normal-dispersion mode locking laser based on SESAM
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