We present a universal method for energy-scaling of fiber chirped-pulse-amplification systems using the concept of actively controlled divided-pulse amplification incorporating separated free-space division and recombination stages allowing for nanosecond delays. This allows for efficient combining with high energy extraction and high B-integrals. In a first experiment femtosecond pulses with pulse energies of 1 mJ have been achieved
The possibility of energy scaling of ultrashort-pulse amplifiers employing both chirpedpulse amplifi...
Three kinds of pulse amplification techniques including chirped-pulse amplification (CPA), parabolic...
We report a 1-MHz robust, all-fiber amplifier-oscillator system. Amplified pulses of 3 μJ are extern...
Divided-pulse amplification is a promising method for the energy scaling of femtosecond laser amplif...
International audienceWe implement both chirped pulse amplification and divided pulse amplification ...
We implement both chirped pulse amplification and divided pulse amplification in the same femtosecon...
The pulse-energy scaling technique electro-optically controlled divided-pulse amplification is imple...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
Ytterbium-doped fiber chirped-pulse amplification (FCPA) systems have seen an unprecedented power de...
Spatially and temporally separated amplification and subsequent coherent addition of femtosecond pul...
Ytterbium-doped solid-state lasers are versatile tools for the generation of intense ultrashort puls...
A novel technique for divided-pulse amplification is presented in a proof-ofprinciple experiment. A ...
Abstract: We demonstrate an approach to avoid nonlinear effects in amplification. The initial pulse ...
We present a new high-efficiency divided chirp-pulse amplification (DCPA) system based on an activel...
We report on an ytterbium-doped fiber chirped-pulse amplification (CPA) system delivering millijoule...
The possibility of energy scaling of ultrashort-pulse amplifiers employing both chirpedpulse amplifi...
Three kinds of pulse amplification techniques including chirped-pulse amplification (CPA), parabolic...
We report a 1-MHz robust, all-fiber amplifier-oscillator system. Amplified pulses of 3 μJ are extern...
Divided-pulse amplification is a promising method for the energy scaling of femtosecond laser amplif...
International audienceWe implement both chirped pulse amplification and divided pulse amplification ...
We implement both chirped pulse amplification and divided pulse amplification in the same femtosecon...
The pulse-energy scaling technique electro-optically controlled divided-pulse amplification is imple...
The coherent combination of ultra short laser pulses is a promising approach for scaling the average...
Ytterbium-doped fiber chirped-pulse amplification (FCPA) systems have seen an unprecedented power de...
Spatially and temporally separated amplification and subsequent coherent addition of femtosecond pul...
Ytterbium-doped solid-state lasers are versatile tools for the generation of intense ultrashort puls...
A novel technique for divided-pulse amplification is presented in a proof-ofprinciple experiment. A ...
Abstract: We demonstrate an approach to avoid nonlinear effects in amplification. The initial pulse ...
We present a new high-efficiency divided chirp-pulse amplification (DCPA) system based on an activel...
We report on an ytterbium-doped fiber chirped-pulse amplification (CPA) system delivering millijoule...
The possibility of energy scaling of ultrashort-pulse amplifiers employing both chirpedpulse amplifi...
Three kinds of pulse amplification techniques including chirped-pulse amplification (CPA), parabolic...
We report a 1-MHz robust, all-fiber amplifier-oscillator system. Amplified pulses of 3 μJ are extern...