Phase-stable parametric chirped-pulse amplification of ultrashort pulses from a carrier-envelope phase-stabilized mode-locked Ti:sapphire oscillator (11.0 fs) to 0.25 mJ/pulse at 1 kHz is demonstrated. Compression with a grating compressor and a LCD shaper yields near-Fourier-limited 11.8-fs pulses with an energy of 0.12 mJ. The amplifier is pumped by 532-nm pulses from a synchronized mode-locked laser, Nd:YAG amplifier system. This approach is shown to be promising for the next generation of ultrafast amplifiers aimed at producing terawatt-level phase-controlled few-cycle laser pulses. (C) 2005 Optical Society of America
We report on coherent synthesis of two ultra-broadband optical parametric amplifiers, resulting in o...
Waveform-stabilized laser pulses have revolutionized the exploration of the electronic structure and...
In recent years, optical parametric chirped-pulse amplification (OPCPA) has emerged as a powerful to...
Phase-stable parametric chirped-pulse amplification of ultrashort pulses from a carrier-envelope pha...
we report, to the best of our knowledge, the f irst real-ization o ultrasho tively de paramet pump l...
We demonstrate the generation of 9.8 ± 0.3 fs laser pulses with a peak power exceeding one terawatt ...
In an effort to develop a robust and efficient front end for a chirped-pulse parametric amplificatio...
Phase-stabilized 12-fs, 1-nJ pulses from a commercial Ti:sapphire oscillator are directly amplified ...
International audienceWe report the routine generation of sub-5-fs laser pulses with 1-mJ energy and...
An optical parametric chirped pulse amplifier fully based on Yb lasers at 500 kHz is described. Pass...
We demonstrate a noncollinear optical parametric chirped pulse amplifier system that produces 7.6 fs...
In this work, optical pulse amplification by parametric chirped-pulse amplification (OPCPA) has been...
The phase stability of broadband (280 nm bandwidth) terawatt-class parametric amplification was meas...
Optical parametric chirped pulse amplification (OPCPA) is a well established method to produce high-e...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...
We report on coherent synthesis of two ultra-broadband optical parametric amplifiers, resulting in o...
Waveform-stabilized laser pulses have revolutionized the exploration of the electronic structure and...
In recent years, optical parametric chirped-pulse amplification (OPCPA) has emerged as a powerful to...
Phase-stable parametric chirped-pulse amplification of ultrashort pulses from a carrier-envelope pha...
we report, to the best of our knowledge, the f irst real-ization o ultrasho tively de paramet pump l...
We demonstrate the generation of 9.8 ± 0.3 fs laser pulses with a peak power exceeding one terawatt ...
In an effort to develop a robust and efficient front end for a chirped-pulse parametric amplificatio...
Phase-stabilized 12-fs, 1-nJ pulses from a commercial Ti:sapphire oscillator are directly amplified ...
International audienceWe report the routine generation of sub-5-fs laser pulses with 1-mJ energy and...
An optical parametric chirped pulse amplifier fully based on Yb lasers at 500 kHz is described. Pass...
We demonstrate a noncollinear optical parametric chirped pulse amplifier system that produces 7.6 fs...
In this work, optical pulse amplification by parametric chirped-pulse amplification (OPCPA) has been...
The phase stability of broadband (280 nm bandwidth) terawatt-class parametric amplification was meas...
Optical parametric chirped pulse amplification (OPCPA) is a well established method to produce high-e...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...
We report on coherent synthesis of two ultra-broadband optical parametric amplifiers, resulting in o...
Waveform-stabilized laser pulses have revolutionized the exploration of the electronic structure and...
In recent years, optical parametric chirped-pulse amplification (OPCPA) has emerged as a powerful to...