The influence of parasitic processes on the performance of ultra-broadband noncollinear optical parametric amplifiers (NOPA’s) is investigated for walk-off and non-walk-off compensating configurations. Experimental results with a white-light–seeded NOPA agree well with numerical simulations. The same model shows that 10% of the output energy of an amplified signal can be transferred into a parasitic second harmonic of the signal. These findings are supported by quantitative measurements on a few-cycle NOPA, where a few percent of the signal energy is converted to its second harmonic in the walk-off compensating case. This effect is reduced by an order of magnitude in the non-walk-off compensating configuration. A detailed study of the phase...
In this paper we discuss the bandwidth enhancement that can be achieved in multi-joule optical param...
One of the most efficient and widely spread method for generation of ultra-short and high peak power...
International audienceWe demonstrate a technique for compensation of the idler angular chirp from an...
The choice of optimum phase-matching conditions for nobcollinear optical parametric amplifiers is us...
Noncollinearly phase-matched optical parametric amplifiers (NOPAs) - pumped with the green light of ...
We present a systematic numerical design and performance study of an ultra-broadband noncollinear op...
During amplification in a noncollinear optical parametric amplifier the spatial and temporal coordin...
We have performed extensive numerical studies of quasi-phase-matched optical parametric amplificatio...
We introduce the notion of dissipative optical parametric amplifiers (DOPA) and demonstrate that, ev...
We perform a fully quantum analysis of the continuously pumped nondegenerate travelling wave optical...
We present analytical solutions to nonlinear coupling equations for parametric down-conversion of a ...
Fiber optical parametric amplifiers (OPAs) are based on the third-order nonlinear susceptibility of ...
Experimental investigations of nondegenerate ultrabroadband chirped pulse optical parametric amplifi...
National Natural Science Foundation of China [61521093, 61378030]We theoretically analyzed output be...
Optical parametric chirped pulse amplication (OPCPA) is a method used to generate high-powered laser...
In this paper we discuss the bandwidth enhancement that can be achieved in multi-joule optical param...
One of the most efficient and widely spread method for generation of ultra-short and high peak power...
International audienceWe demonstrate a technique for compensation of the idler angular chirp from an...
The choice of optimum phase-matching conditions for nobcollinear optical parametric amplifiers is us...
Noncollinearly phase-matched optical parametric amplifiers (NOPAs) - pumped with the green light of ...
We present a systematic numerical design and performance study of an ultra-broadband noncollinear op...
During amplification in a noncollinear optical parametric amplifier the spatial and temporal coordin...
We have performed extensive numerical studies of quasi-phase-matched optical parametric amplificatio...
We introduce the notion of dissipative optical parametric amplifiers (DOPA) and demonstrate that, ev...
We perform a fully quantum analysis of the continuously pumped nondegenerate travelling wave optical...
We present analytical solutions to nonlinear coupling equations for parametric down-conversion of a ...
Fiber optical parametric amplifiers (OPAs) are based on the third-order nonlinear susceptibility of ...
Experimental investigations of nondegenerate ultrabroadband chirped pulse optical parametric amplifi...
National Natural Science Foundation of China [61521093, 61378030]We theoretically analyzed output be...
Optical parametric chirped pulse amplication (OPCPA) is a method used to generate high-powered laser...
In this paper we discuss the bandwidth enhancement that can be achieved in multi-joule optical param...
One of the most efficient and widely spread method for generation of ultra-short and high peak power...
International audienceWe demonstrate a technique for compensation of the idler angular chirp from an...