The brightness of a particular harmonic order is optimized for the chirp and initial phase of the laser pulse by genetic algorithm. The influences of the chirp and initial phase of the excitation pulse on the harmonic spectra are discussed in terms of the semi-classical model including the propagation effects. The results indicate that the harmonic intensity and cutoff have strong dependence on the chirp of the laser pulse, but slightly on its initial phase. The high-order harmonics can be enhanced by the optimal laser pulse and its cutoff can be tuned by optimization of the chirp and initial phase of the laser pulse
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
We use a genetic algorithm to theoretically optimize several properties of extreme ultraviolet (XUV)...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
We explore experimentally and numerically the physics underlying the optimization of high-order harm...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
We use a genetic algorithm to theoretically optimize several properties of extreme ultraviolet (XUV)...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
We explore experimentally and numerically the physics underlying the optimization of high-order harm...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceWe explore experimentally and numerically the physics underlying the optimizat...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
International audienceIn order to develop an intense Extreme Ultra-Violet source based on High Harmo...
We use a genetic algorithm to theoretically optimize several properties of extreme ultraviolet (XUV)...