For an Er-doped fiber laser, for the first time, to the best of our knowledge, we demonstrate both experimentally and theoretically a novel mechanism of harmonic mode-locking based on the electrostriction effect leading to excitation of the torsional acoustic modes in the transverse section of the laser. The exited torsional acoustic modes modulate the fiber birefringence that results in synchronization of oscillations at the harmonic modes and the linewidth narrowing with the increased signal-to-noise ratio of 30 dB. By adjusting the in-cavity birefringence based on tuning the polarization controller, we enable the selection of the harmonic mode to be stabilized
The modulation and multimode instabilities are the main mechanisms which drive spontaneous spatial a...
The experimental results of the stable high-order harmonic mode-locking pulses generation and amplif...
Transverse acoustic resonances at gigahertz frequencies are excited by electrostriction in the few-m...
For an Er-doped fiber laser, for the first time, to the best of our knowledge, we demonstrate both e...
A controllable passive harmonic mode locking (HML) in an erbium-doped fiber laser with a soliton pul...
A mode locked fibre laser as a source of ultra-stable pulse train has revolutionised a wide range of...
We experimentally demonstrate a harmonically mode-locked Er-doped fiber laser. The distinctive featu...
2007 Conference on Lasers and Electro-Optics - Pacific Rim, CLEO/PACIFIC RIM, Seoul, 26-31 August 20...
Abstract—Polarization-dependent states of the output pulse train generated from an active harmonic m...
International audienceWe have studied the influence of an external continuous wave on a passively mo...
We present a detailed description of a passive harmonically mode-locked laser. Experimental results ...
International audienceWe demonstrate actively mode-locked operation of a fiber laser using a novel m...
We report the experimental demonstration of a passively mode-locked Er-doped fiber ring laser operat...
The Letter reports passive, harmonic repetition rate stabilisation at frequencies ranging from 200MH...
On basis of numerical simulation and analytical treatment, we investigate the multiple pulse passive...
The modulation and multimode instabilities are the main mechanisms which drive spontaneous spatial a...
The experimental results of the stable high-order harmonic mode-locking pulses generation and amplif...
Transverse acoustic resonances at gigahertz frequencies are excited by electrostriction in the few-m...
For an Er-doped fiber laser, for the first time, to the best of our knowledge, we demonstrate both e...
A controllable passive harmonic mode locking (HML) in an erbium-doped fiber laser with a soliton pul...
A mode locked fibre laser as a source of ultra-stable pulse train has revolutionised a wide range of...
We experimentally demonstrate a harmonically mode-locked Er-doped fiber laser. The distinctive featu...
2007 Conference on Lasers and Electro-Optics - Pacific Rim, CLEO/PACIFIC RIM, Seoul, 26-31 August 20...
Abstract—Polarization-dependent states of the output pulse train generated from an active harmonic m...
International audienceWe have studied the influence of an external continuous wave on a passively mo...
We present a detailed description of a passive harmonically mode-locked laser. Experimental results ...
International audienceWe demonstrate actively mode-locked operation of a fiber laser using a novel m...
We report the experimental demonstration of a passively mode-locked Er-doped fiber ring laser operat...
The Letter reports passive, harmonic repetition rate stabilisation at frequencies ranging from 200MH...
On basis of numerical simulation and analytical treatment, we investigate the multiple pulse passive...
The modulation and multimode instabilities are the main mechanisms which drive spontaneous spatial a...
The experimental results of the stable high-order harmonic mode-locking pulses generation and amplif...
Transverse acoustic resonances at gigahertz frequencies are excited by electrostriction in the few-m...