An ultrafast fiber-chirped-pulse amplification system using a combination of spatial and temporal coherent pulse combination is presented. By distributing the amplification among eight amplifier channels and four pulse replicas, up to 12 mJ pulse energy with 700 W average power and 262 fs pulse duration have been obtained with a system efficiency of 78% and excellent beam quality. To the best of our knowledge, this is the highest energy achieved by an ultrafast fiber-based laser system to date
The presentation will review the recent achievements and potential of spatially and temporally separ...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
An ultrafast laser delivering 10.4 kW average output power based on a coherent combination of 12 ste...
We present a coherently-combined ultrafast fiber laser system consisting of four amplifier channels ...
An ultrafast fiber chirped-pulse amplifier comprising eight coherently combined amplifier channels i...
The performance of fiber laser systems has drastically increased over recent decades, which has open...
The approach of coherent combination of ultrashort laser pulses will reviewed. Concept, achievements...
The pulse-energy scaling technique electro-optically controlled divided-pulse amplification is imple...
An ultrafast fiber chirped-pulse amplifier comprising eight coherently combined amplifier channels i...
The generation of 0.5 mJ femtosecond laser pulses by coherent combining of two high power high energ...
Ytterbium-doped solid-state lasers are versatile tools for the generation of intense ultrashort puls...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
Fiber laser systems offer unique properties for the amplification of ultrashort pulses to high power...
We report on the coherent combination of two chirped pulsed fiber lasers. The beams coming from two ...
An ultrafast ytterbium-doped fiber laser system based on coherent beam combination of 16 amplifier c...
The presentation will review the recent achievements and potential of spatially and temporally separ...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
An ultrafast laser delivering 10.4 kW average output power based on a coherent combination of 12 ste...
We present a coherently-combined ultrafast fiber laser system consisting of four amplifier channels ...
An ultrafast fiber chirped-pulse amplifier comprising eight coherently combined amplifier channels i...
The performance of fiber laser systems has drastically increased over recent decades, which has open...
The approach of coherent combination of ultrashort laser pulses will reviewed. Concept, achievements...
The pulse-energy scaling technique electro-optically controlled divided-pulse amplification is imple...
An ultrafast fiber chirped-pulse amplifier comprising eight coherently combined amplifier channels i...
The generation of 0.5 mJ femtosecond laser pulses by coherent combining of two high power high energ...
Ytterbium-doped solid-state lasers are versatile tools for the generation of intense ultrashort puls...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
Fiber laser systems offer unique properties for the amplification of ultrashort pulses to high power...
We report on the coherent combination of two chirped pulsed fiber lasers. The beams coming from two ...
An ultrafast ytterbium-doped fiber laser system based on coherent beam combination of 16 amplifier c...
The presentation will review the recent achievements and potential of spatially and temporally separ...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
An ultrafast laser delivering 10.4 kW average output power based on a coherent combination of 12 ste...