In this contribution, experimental approaches to control mode instabilities (MI) at average output powers higher than 330 W, which corresponds to three times the typical power threshold of the fiber laser system in use, is presented. Hereby, an acousto-optic deflector is used to change rapidly the beam position of the seed signal on the fiber core at the input side. Dynamic excitation is combined with an electronic feedback loop to actively stabilize the beam profile
The phenomenon of mode instabilities has quickly become the most limiting effect for a further scali...
A new and simple approach was optimized for stabilizing a harmonic active mode-locked fiber laser at...
We analyse the limitation of the amplitude modulation rejection due to the spatial modulation of the...
We demonstrate an approach to actively stabilize the beam profile of a fiber amplifier above the mod...
A new way of stabilizing the output beam of a fiber laser system operating above the mode instabilit...
Summary form only given. In recent years the evolution of the average output power emitted by high-p...
The phenomenon of transverse mode instabilities (TMI) is currently the most limiting effect for the ...
The threshold-like onset of mode instabilities in high power fiber laser and amplifiers has quickly ...
Mode instabilities have quickly become the most limiting effect when it comes to scaling the output ...
We investigate the dependence of the mode instability threshold on the average output power of the s...
In this work we present guidelines to increase the transverse mode instability threshold of high pow...
We propose, to the best of our knowledge, the first mitigation strategy for TMI based on controlling...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
The onset of mode instabilities is an effect occurring in high-average-power fiber lasers and amplif...
The temporal behavior of mode instabilities in active large mode area fibers is experimentally inves...
The phenomenon of mode instabilities has quickly become the most limiting effect for a further scali...
A new and simple approach was optimized for stabilizing a harmonic active mode-locked fiber laser at...
We analyse the limitation of the amplitude modulation rejection due to the spatial modulation of the...
We demonstrate an approach to actively stabilize the beam profile of a fiber amplifier above the mod...
A new way of stabilizing the output beam of a fiber laser system operating above the mode instabilit...
Summary form only given. In recent years the evolution of the average output power emitted by high-p...
The phenomenon of transverse mode instabilities (TMI) is currently the most limiting effect for the ...
The threshold-like onset of mode instabilities in high power fiber laser and amplifiers has quickly ...
Mode instabilities have quickly become the most limiting effect when it comes to scaling the output ...
We investigate the dependence of the mode instability threshold on the average output power of the s...
In this work we present guidelines to increase the transverse mode instability threshold of high pow...
We propose, to the best of our knowledge, the first mitigation strategy for TMI based on controlling...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
The onset of mode instabilities is an effect occurring in high-average-power fiber lasers and amplif...
The temporal behavior of mode instabilities in active large mode area fibers is experimentally inves...
The phenomenon of mode instabilities has quickly become the most limiting effect for a further scali...
A new and simple approach was optimized for stabilizing a harmonic active mode-locked fiber laser at...
We analyse the limitation of the amplitude modulation rejection due to the spatial modulation of the...