Long-term repetition frequency stabilization of passively mode-locked (ML) fiber lasers using high-frequency harmonic synchronization is investigated. First, the standard cavity length controlling-based stabilization scheme is studied mathematically, and its disadvantages in high-frequency harmonic synchronization are analyzed. Theoretical studies are then carried out to prove that by modulating the pump power of lasers, the disadvantages can be overcome, and high-stability stabilization with low noises can thus be achieved. Based on the studies, an improved frequency stabilization scheme for passively ML fiber lasers is proposed. Its performances are evaluated by synchronizing a high-frequency harmonic of an ML laser with a 3.035-GHz refer...
Lasers have been widely used in various fields since the invention of first laser in 1960. Low-noise...
Harmonically mode-locked soliton fiber lasers have been intensively investigated in recent years due...
International audienceDual-frequency fiber lasers (DFFL) are shown to provide high purity beat notes...
We have experimentally reported a passively harmonic mode-locked fiber laser at controllable repetit...
High data rate clock recovery is a key technology for realizing future ultrafast optical time divisi...
Mode-locked laser diodes (MLLDs) are excellent candidates for generating ultrashort high frequency p...
Femtosecond mode-locked lasers have become one of the indispensable tools for spectroscopy and micro...
A new and simple approach was optimized for stabilizing a harmonic active mode-locked fiber laser at...
In this paper, a frequency stabilized actively mode-locked fiber laser with 2 GHz repetition rate is...
High-quality ultrashort pulses of light generated by solid-state modelocked femtosecond lasers have ...
Rational harmonic mode locking (RHML) in an active mode-locked fiber laser can increase the output p...
We demonstrate a new phase-locking technique for long-term and high-precision stabilization of mode-...
Date du colloque : 03/2011International audienceWe investigate different ways to considerably i...
Laser sources delivering high-repetition-rate ultrashort pulses are highly demanded in numerous phot...
Optical self seeding feedback techniques can be used to improve the noise characteristics of passive...
Lasers have been widely used in various fields since the invention of first laser in 1960. Low-noise...
Harmonically mode-locked soliton fiber lasers have been intensively investigated in recent years due...
International audienceDual-frequency fiber lasers (DFFL) are shown to provide high purity beat notes...
We have experimentally reported a passively harmonic mode-locked fiber laser at controllable repetit...
High data rate clock recovery is a key technology for realizing future ultrafast optical time divisi...
Mode-locked laser diodes (MLLDs) are excellent candidates for generating ultrashort high frequency p...
Femtosecond mode-locked lasers have become one of the indispensable tools for spectroscopy and micro...
A new and simple approach was optimized for stabilizing a harmonic active mode-locked fiber laser at...
In this paper, a frequency stabilized actively mode-locked fiber laser with 2 GHz repetition rate is...
High-quality ultrashort pulses of light generated by solid-state modelocked femtosecond lasers have ...
Rational harmonic mode locking (RHML) in an active mode-locked fiber laser can increase the output p...
We demonstrate a new phase-locking technique for long-term and high-precision stabilization of mode-...
Date du colloque : 03/2011International audienceWe investigate different ways to considerably i...
Laser sources delivering high-repetition-rate ultrashort pulses are highly demanded in numerous phot...
Optical self seeding feedback techniques can be used to improve the noise characteristics of passive...
Lasers have been widely used in various fields since the invention of first laser in 1960. Low-noise...
Harmonically mode-locked soliton fiber lasers have been intensively investigated in recent years due...
International audienceDual-frequency fiber lasers (DFFL) are shown to provide high purity beat notes...