A Nd:glass regenerative amplifier has been set up to generate the pumping pulse with variable pulse width for an optical parametric chirped-pulse amplification (OPCPA) laser system. Each pulse of the pulse train from a cw self-mode-locking femtosecond Ti:sapphire oscillator is stretched to approximate to300 ps at 1062 nm to be split equally and injected into a nonlinear crystal and the Nd:glass regenerative amplifier, as the chirped signal pulse train and the seed pulse train of the pumping laser system, respectively. By adjusting the cavity length of the regenerative amplifier directly, the width of amplified pulse could be varied continuously from approximate to300 ps to approximate to3 ns. The chirped signal pulse for the OPCPA laser sys...
We report on an active synchronization between two independent mode-locked lasers using a combined e...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
We demonstrate an approach to fundamentally improve the contrast of optical parametric chirped-pulse...
A high-energy diode-pumped picosecond laser system centered at 1064 nm for optical parametric chirpe...
A novel Nd:YVO4-based regenerative amplifier system operating in the picosecond regime featuring a v...
Optical parametric chirped pulse amplification (OPCPA) is a scalable technology, for ultrashort puls...
We demonstrate an approach to fundamentally improve the contrast of optical parametric chirped-pulse...
We present an optical parametric chirped pulse amplifier (OPCPA) delivering 10.5 mJ pulses with dura...
Optical parametric amplifiers have emerged as important optical sources by extending the properties ...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
National Science Foundation of China (NSFC) [11127901, 11134010]; Shanghai Sailing Program [15YF1413...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
We report on an active synchronization between two independent mode-locked lasers using a combined e...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
We demonstrate an approach to fundamentally improve the contrast of optical parametric chirped-pulse...
A high-energy diode-pumped picosecond laser system centered at 1064 nm for optical parametric chirpe...
A novel Nd:YVO4-based regenerative amplifier system operating in the picosecond regime featuring a v...
Optical parametric chirped pulse amplification (OPCPA) is a scalable technology, for ultrashort puls...
We demonstrate an approach to fundamentally improve the contrast of optical parametric chirped-pulse...
We present an optical parametric chirped pulse amplifier (OPCPA) delivering 10.5 mJ pulses with dura...
Optical parametric amplifiers have emerged as important optical sources by extending the properties ...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
National Science Foundation of China (NSFC) [11127901, 11134010]; Shanghai Sailing Program [15YF1413...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
We report on an active synchronization between two independent mode-locked lasers using a combined e...
A method for fundamentally improving the temporal contrast of optical parametric chirped-pulse-ampli...
We demonstrate an approach to fundamentally improve the contrast of optical parametric chirped-pulse...