We propose, to the best of our knowledge, the first mitigation strategy for TMI based on controlling the phase shift between the thermally-induced index grating and the modal intensity pattern. In particular, in this work we present a study of transverse mode instabilities in burst operation in a high-power fiber laser system. It is shown that, with a careful choice of the parameters, this operation regime can potentially lead to the mitigation of TMI by forcing an energy transfer from the higher-order-modes into the fundamental mode during the burst
Detailed simulations on the temperature profile inside of a large mode area fiber in high power oper...
Transverse modal instability (TMl) [1] is proving to be a major power-scaling limitation in high-pow...
In the past decades, fibre laser and amplifier systems have seen a rapid power increase due to the e...
A phase shift between the modal interference pattern and the thermally-induced refractive index grat...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
Summary form only given. In recent years the evolution of the average output power emitted by high-p...
Thermally induced refractive index gratings in Yb-doped fibers lead to transverse mode instability (...
The thermally-induced transverse mode instability (TMI) has become a major challenge for further enh...
In this work we have investigated the impact of pump-power noise on transverse mode instabilities (T...
In this work, we study the generation and evolution of phase-shifts between the modal interference p...
This work presents an overview on the latest advancements in the understanding of transverse mode in...
The phenomenon of transverse mode instabilities (TMI) is currently the most limiting effect for the ...
Local transverse modal instability (TMI) gain has been derived by carrying out a stability analysis ...
Local transverse modal instability (TMI) gain has been derived by carrying out a stability analysis ...
More power to fibre optic lasers Researchers have cracked a ‘did the chicken come before the egg’ di...
Detailed simulations on the temperature profile inside of a large mode area fiber in high power oper...
Transverse modal instability (TMl) [1] is proving to be a major power-scaling limitation in high-pow...
In the past decades, fibre laser and amplifier systems have seen a rapid power increase due to the e...
A phase shift between the modal interference pattern and the thermally-induced refractive index grat...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
Summary form only given. In recent years the evolution of the average output power emitted by high-p...
Thermally induced refractive index gratings in Yb-doped fibers lead to transverse mode instability (...
The thermally-induced transverse mode instability (TMI) has become a major challenge for further enh...
In this work we have investigated the impact of pump-power noise on transverse mode instabilities (T...
In this work, we study the generation and evolution of phase-shifts between the modal interference p...
This work presents an overview on the latest advancements in the understanding of transverse mode in...
The phenomenon of transverse mode instabilities (TMI) is currently the most limiting effect for the ...
Local transverse modal instability (TMI) gain has been derived by carrying out a stability analysis ...
Local transverse modal instability (TMI) gain has been derived by carrying out a stability analysis ...
More power to fibre optic lasers Researchers have cracked a ‘did the chicken come before the egg’ di...
Detailed simulations on the temperature profile inside of a large mode area fiber in high power oper...
Transverse modal instability (TMl) [1] is proving to be a major power-scaling limitation in high-pow...
In the past decades, fibre laser and amplifier systems have seen a rapid power increase due to the e...