We report a simple all-fiber sliding-frequency soliton laser incorporating a recently developed low-insertion-loss acousto-optic fiber frequency shifter. The frequency shifter simultaneously provides the spectral filtering and polarizing properties required for pulsed operation to be obtained
Harmonically mode-locked soliton fiber lasers have been intensively investigated in recent years due...
We report a wavelength-tunable soliton fiber laser stably mode-locked at 1.88 GHz (the 389th harmoni...
We present an experimental and theoretical investigation of the role of group-velocity dispersion in...
Recently, impressive progress has been made in the development of fiber acoustooptic frequency shift...
In analogy with the sliding filter method that was invented by L F Mollenauer et al, the soliton sta...
The authors demonstrate self-starting soliton generation by inserting a travelling wave acousto-opti...
An all-fiber-optic frequency shifter is demonstrated that uses mode coupling between the LP01 and LP...
Apart from the classical nonlinear polarization rotation (NPR) mechanism, we incorporate an addition...
Laser sources delivering high-repetition-rate ultrashort pulses are highly demanded in numerous phot...
Strong enhancement of optoacoustic interactions in the micrometer-sized core of a photonic crystal f...
We experimentally investigate the alternative generation of dissipative solitons (DSs) or noise-like...
This paper concerns a Wavelength-Swept Fiber Laser (WSFL) incorporating frequency shifted feedback a...
Abstract—Soliton self-frequency shift (SSFS), a consequence of Raman self-pumping that continuously ...
We report a wavelength-switchable single-polarization dissipative soliton (DS) mode-locked fiber las...
Frequency shifters in which several acoustic transducers act on an optical fibre potentially offer l...
Harmonically mode-locked soliton fiber lasers have been intensively investigated in recent years due...
We report a wavelength-tunable soliton fiber laser stably mode-locked at 1.88 GHz (the 389th harmoni...
We present an experimental and theoretical investigation of the role of group-velocity dispersion in...
Recently, impressive progress has been made in the development of fiber acoustooptic frequency shift...
In analogy with the sliding filter method that was invented by L F Mollenauer et al, the soliton sta...
The authors demonstrate self-starting soliton generation by inserting a travelling wave acousto-opti...
An all-fiber-optic frequency shifter is demonstrated that uses mode coupling between the LP01 and LP...
Apart from the classical nonlinear polarization rotation (NPR) mechanism, we incorporate an addition...
Laser sources delivering high-repetition-rate ultrashort pulses are highly demanded in numerous phot...
Strong enhancement of optoacoustic interactions in the micrometer-sized core of a photonic crystal f...
We experimentally investigate the alternative generation of dissipative solitons (DSs) or noise-like...
This paper concerns a Wavelength-Swept Fiber Laser (WSFL) incorporating frequency shifted feedback a...
Abstract—Soliton self-frequency shift (SSFS), a consequence of Raman self-pumping that continuously ...
We report a wavelength-switchable single-polarization dissipative soliton (DS) mode-locked fiber las...
Frequency shifters in which several acoustic transducers act on an optical fibre potentially offer l...
Harmonically mode-locked soliton fiber lasers have been intensively investigated in recent years due...
We report a wavelength-tunable soliton fiber laser stably mode-locked at 1.88 GHz (the 389th harmoni...
We present an experimental and theoretical investigation of the role of group-velocity dispersion in...