Multi-core fibers (MCFs) are promising solutions for high power fiber based devices as they reduce nonlinearity and other unwanted detrimental effects, like transverse mode instability, by transporting, instead of a single high power beam, several low-powered ones to be coherently combined at the fiber output. This method relies on accurate evaluation of the phase differences between signals in different cores, which are significantly impacted by changes in the effective index of the propagating modes. For this to be effective, spatial heat generation must be accounted for. In particular, the heat flux from the doped cores to the external boundary causes a temperature gradient across the fiber, which affects the refractive index distributio...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
Power scaling of fiber laser systems requires the development of innovative active fibers, capable o...
This paper provides a detailed derivation of coupled-mode equations for thermo-optic nonlinear effec...
Multi-core fibers (MCFs) are promising solutions for high power fiber based devices as they reduce n...
Lasers for modern industrial and research applications are required to provide a high average beam p...
The phase of modes in three-core optical fibers under high thermal load is studied by means of combi...
The phase of modes in three-core optical fibers under high thermal load is studied by means of the c...
We present results on multi-core fibers (MCFs) for optical amplification/lasing obtained by combined...
Multicore fibers have been recently proposed as a possible solution to overcome the problems which a...
Multi-core fiber capability to deliver several independent beams in a single structure has been deep...
Multi-core fibers are a technology currently at the forefront of research due to the increasing need...
In this abstract, the performance of optically uncoupled cores in 9-core multi core fibers for high-...
The impact of thermo-optic refractive-index changes arising from the core heat load in a dual-core f...
Recently, the thermo-optic effect, which causes refractive index change in active optical fibers, em...
The aim of this work is to study the thermal and optical properties of 16-core fibers using the fini...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
Power scaling of fiber laser systems requires the development of innovative active fibers, capable o...
This paper provides a detailed derivation of coupled-mode equations for thermo-optic nonlinear effec...
Multi-core fibers (MCFs) are promising solutions for high power fiber based devices as they reduce n...
Lasers for modern industrial and research applications are required to provide a high average beam p...
The phase of modes in three-core optical fibers under high thermal load is studied by means of combi...
The phase of modes in three-core optical fibers under high thermal load is studied by means of the c...
We present results on multi-core fibers (MCFs) for optical amplification/lasing obtained by combined...
Multicore fibers have been recently proposed as a possible solution to overcome the problems which a...
Multi-core fiber capability to deliver several independent beams in a single structure has been deep...
Multi-core fibers are a technology currently at the forefront of research due to the increasing need...
In this abstract, the performance of optically uncoupled cores in 9-core multi core fibers for high-...
The impact of thermo-optic refractive-index changes arising from the core heat load in a dual-core f...
Recently, the thermo-optic effect, which causes refractive index change in active optical fibers, em...
The aim of this work is to study the thermal and optical properties of 16-core fibers using the fini...
The output average power of fiber laser systems is currently limited by the effect of transverse mod...
Power scaling of fiber laser systems requires the development of innovative active fibers, capable o...
This paper provides a detailed derivation of coupled-mode equations for thermo-optic nonlinear effec...