We present a new approach to high power fibre laser design, consisting of a polymer-free all-glass optical fibre waveguide directly overclad with a high thermal conductivity metal coating. This metal clad active fibre allows a significant reduction in thermal resistance between the active fibre and the laser heat-sink as well as a significant increase in the operating temperature range. In this paper we show the results of a detailed thermal analysis of both polymer and metal coated active fibres under thermal loads typical of kW fibre laser systems. Through several different experiments we present the first demonstration of a cladding pumped aluminium-coated fibre laser and the first demonstration of efficient operation of a cladding-pumpe...
We demonstrate a new design for active fluoride glass fibres in which a metal coating instead of a p...
Cladding-pumped fiber lasers and amplifiers offer a number of unique properties. These enabled the v...
An analytical approach for the thermal design of high-power-fiber laser components is presented. The...
We present a novel metal coated triple clad active fibre design, utilising an all glass inner claddi...
We introduce a novel metal coated active fibre design for use in high power fibre laser systems. Com...
The ability to operate fibre lasers above the temperature limits traditionally set by degradation of...
A fundamental limit for the scaling of the output power of fiber lasers is the heat generated in the...
We review progress in the development of cladding-pumped fibre laser technology which now provides a...
Very high temperature operation of a rare earth doped fibre laser is investigated. An all-glass ytte...
An analytical approach for the thermal design for high-power fiber lasers and fiber components is pr...
We demonstrate a new concept in development of high power fibre lasers based on single clad coiled f...
We demonstrate a new concept in development of high power fibre lasers based on single clad coiled f...
Theoretical and experimental investigation of two proposed thermal management approaches for high-po...
Theoretical and experimental investigation of two proposed thermal management approaches for high-po...
This thesis focuses on developing power scaling architectures for solid-state and fiber lasers. The ...
We demonstrate a new design for active fluoride glass fibres in which a metal coating instead of a p...
Cladding-pumped fiber lasers and amplifiers offer a number of unique properties. These enabled the v...
An analytical approach for the thermal design of high-power-fiber laser components is presented. The...
We present a novel metal coated triple clad active fibre design, utilising an all glass inner claddi...
We introduce a novel metal coated active fibre design for use in high power fibre laser systems. Com...
The ability to operate fibre lasers above the temperature limits traditionally set by degradation of...
A fundamental limit for the scaling of the output power of fiber lasers is the heat generated in the...
We review progress in the development of cladding-pumped fibre laser technology which now provides a...
Very high temperature operation of a rare earth doped fibre laser is investigated. An all-glass ytte...
An analytical approach for the thermal design for high-power fiber lasers and fiber components is pr...
We demonstrate a new concept in development of high power fibre lasers based on single clad coiled f...
We demonstrate a new concept in development of high power fibre lasers based on single clad coiled f...
Theoretical and experimental investigation of two proposed thermal management approaches for high-po...
Theoretical and experimental investigation of two proposed thermal management approaches for high-po...
This thesis focuses on developing power scaling architectures for solid-state and fiber lasers. The ...
We demonstrate a new design for active fluoride glass fibres in which a metal coating instead of a p...
Cladding-pumped fiber lasers and amplifiers offer a number of unique properties. These enabled the v...
An analytical approach for the thermal design of high-power-fiber laser components is presented. The...