The choice of optimum phase-matching conditions for nobcollinear optical parametric amplifiers is usually made on the basis of the linear spectral dispersion characteristics of the anisotropic nonlinear crystal. However, for high-peak-power operation, where pump depletion is involved, it is shown that the tolerance of the parametric gain with regard to k-vector mismatch is to change the optimum phase-matching parameters. Our calculations show that, with the revised parameters, an enhancement in peak power approaching 50% could be achieved
One of the most efficient and widely spread method for generation of ultra-short and high peak power...
We present a systematic numerical design and performance study of an ultra-broadband noncollinear op...
The conversion efficiency and phase matching bandwidth of ultrafast optical parametric amplification...
The choice of optimum phase-matching conditions for noncollinear optical parametric amplifiers is us...
Noncollinearly phase-matched optical parametric amplifiers (NOPAs) - pumped with the green light of ...
We have performed extensive numerical studies of quasi-phase-matched optical parametric amplificatio...
We present analytical solutions to nonlinear coupling equations for parametric down-conversion of a ...
Experimental investigations of nondegenerate ultrabroadband chirped pulse optical parametric amplifi...
The influence of parasitic processes on the performance of ultra-broadband noncollinear optical para...
The properties of noncollinear optical parametric amplification (NOPA) based on quasi-phase matching...
The spectral bandwidth of three-wave-mixing optical parametric amplification has been investigated. ...
In this paper we discuss the bandwidth enhancement that can be achieved in multi-joule optical param...
We propose a set of empirical formulas to describe the signal broadband gain regime and ultra-broadb...
During amplification in a noncollinear optical parametric amplifier the spatial and temporal coordin...
Abstract In this study we present a performance analysis of single-pumped and dual- pumped parametri...
One of the most efficient and widely spread method for generation of ultra-short and high peak power...
We present a systematic numerical design and performance study of an ultra-broadband noncollinear op...
The conversion efficiency and phase matching bandwidth of ultrafast optical parametric amplification...
The choice of optimum phase-matching conditions for noncollinear optical parametric amplifiers is us...
Noncollinearly phase-matched optical parametric amplifiers (NOPAs) - pumped with the green light of ...
We have performed extensive numerical studies of quasi-phase-matched optical parametric amplificatio...
We present analytical solutions to nonlinear coupling equations for parametric down-conversion of a ...
Experimental investigations of nondegenerate ultrabroadband chirped pulse optical parametric amplifi...
The influence of parasitic processes on the performance of ultra-broadband noncollinear optical para...
The properties of noncollinear optical parametric amplification (NOPA) based on quasi-phase matching...
The spectral bandwidth of three-wave-mixing optical parametric amplification has been investigated. ...
In this paper we discuss the bandwidth enhancement that can be achieved in multi-joule optical param...
We propose a set of empirical formulas to describe the signal broadband gain regime and ultra-broadb...
During amplification in a noncollinear optical parametric amplifier the spatial and temporal coordin...
Abstract In this study we present a performance analysis of single-pumped and dual- pumped parametri...
One of the most efficient and widely spread method for generation of ultra-short and high peak power...
We present a systematic numerical design and performance study of an ultra-broadband noncollinear op...
The conversion efficiency and phase matching bandwidth of ultrafast optical parametric amplification...