In this work we present the theoretical study of transverse mode instability (TMI) in ytterbium (Yb)-doped rectangular core fibers with different core aspect ratios using the fast Fourier transform (FFT) beam propagation method (BPM). As expected, the rectangular core fiber with larger aspect ratio (AR.) offers more efficient heat dissipation than a circular core fiber. However, it is found that the rectangular core fiber does not benefit from the better heat dissipation to suppress the TMI when compared to the circular core counterpart. The temperature building in the rectangular core fiber decreases by up to 24.6% with a 10:1 aspect ratio core, while threshold pump power drops by up to 38.3% when compared with a circular core fiber with t...
Multi-core fibers (MCFs) are promising solutions for high power fiber based devices as they reduce n...
Transverse mode instability (TMI) is compared to thermal lensing (TL) power threshold and used to de...
Recently, the thermo-optic effect, which causes refractive index change in active optical fibers, em...
In this work we present the theoretical study of transverse mode instability (TMI) in ytterbium (Yb)...
Multicore fibers have been recently proposed as a possible solution to overcome the problems which a...
We present our investigations on modal instabilities using a commercial LMA fiber with 25 µm core an...
In the past decades, fibre laser and amplifier systems have seen a rapid power increase due to the e...
Summary form only given. The phenomenon of Transverse Mode Instabilities (TMI) [I] has become one of...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
The average output power of Yb-doped fiber amplifier systems is currently limited by the onset of tr...
In the last few years Yb-doped Photonic Crystal Fibers (PCFs) have become the key component for the ...
The impact of thermo-optic refractive-index changes arising from the core heat load in a dual-core f...
In this abstract, the performance of optically uncoupled cores in 9-core multi core fibers for high-...
Thermally induced refractive index gratings in Yb-doped fibers lead to transverse mode instability (...
We theoretically investigate mode area scalability in a bent rectangular-core fiber. We discuss desi...
Multi-core fibers (MCFs) are promising solutions for high power fiber based devices as they reduce n...
Transverse mode instability (TMI) is compared to thermal lensing (TL) power threshold and used to de...
Recently, the thermo-optic effect, which causes refractive index change in active optical fibers, em...
In this work we present the theoretical study of transverse mode instability (TMI) in ytterbium (Yb)...
Multicore fibers have been recently proposed as a possible solution to overcome the problems which a...
We present our investigations on modal instabilities using a commercial LMA fiber with 25 µm core an...
In the past decades, fibre laser and amplifier systems have seen a rapid power increase due to the e...
Summary form only given. The phenomenon of Transverse Mode Instabilities (TMI) [I] has become one of...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
The average output power of Yb-doped fiber amplifier systems is currently limited by the onset of tr...
In the last few years Yb-doped Photonic Crystal Fibers (PCFs) have become the key component for the ...
The impact of thermo-optic refractive-index changes arising from the core heat load in a dual-core f...
In this abstract, the performance of optically uncoupled cores in 9-core multi core fibers for high-...
Thermally induced refractive index gratings in Yb-doped fibers lead to transverse mode instability (...
We theoretically investigate mode area scalability in a bent rectangular-core fiber. We discuss desi...
Multi-core fibers (MCFs) are promising solutions for high power fiber based devices as they reduce n...
Transverse mode instability (TMI) is compared to thermal lensing (TL) power threshold and used to de...
Recently, the thermo-optic effect, which causes refractive index change in active optical fibers, em...