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Attosecond electromagnetic pulses: generation, measurement, and application. Generation of high-order harmonics of an intense laser field for attosecond pulse production

机译:阿秒电磁脉冲:产生,测量和应用。产生强激光场的高次谐波以产生阿秒脉冲

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This review presents the current state of research on the generation and application of subfemtosecond (or attosecond, where 1 as = 10(-18) s) ultraviolet and X-ray pulses. Emission of attosecond pulses is closely related to the generation of high-order harmonics in a laser field: the interaction of intense femtosecond laser pulses with matter causes the generation of high-order harmonics whose highest orders range from dozens to thousands and which produce attosecond pulses when they are phase-locked in a sufficiently broad spectral region. Two ways of attosecond pulse generation, the interaction of an intense laser radiation with a gaseous medium and with the edge of a solid state plasma, are discussed. The theory of the microscopic high-frequency response of a gaseous medium to an intense low-frequency laser field is presented together with numerical results based on the solution of the time-dependent Schrodinger equation for an atom in the external field. The review describes the methodology for calculating the macroscopic response and for analyzing the phase-matching in high order harmonic generation. For the generation of coherent XUV radiation at the edge of a dense plasma, different generation scenarios are discussed, a simple model is proposed, and a comparison of model predictions with numerical results obtained from particle-in-cell (PIC) simulations is given.
机译:这篇综述介绍了亚飞秒(或阿秒,其中1 as = 10(-18)s)紫外线和X射线脉冲的产生和应用的研究现状。阿秒脉冲的发射与激光场中高次谐波的产生密切相关:强飞秒激光脉冲与物质的相互作用会导致高次谐波的产生,其最高阶范围从数十到数千不等,并产生阿秒脉冲。当它们锁相在足够宽的光谱范围内时。讨论了两种产生阿秒脉冲的方式,即强激光辐射与气态介质以及固态等离子体边缘的相互作用。提出了气态介质对强低频激光场的微观高频响应理论,并基于外场中原子随时间变化的薛定inger方程的求解,给出了数值结果。这篇综述描述了计算宏观响应和分析高次谐波产生中的相位匹配的方法。为了在稠密等离子体的边缘生成相干XUV辐射,讨论了不同的生成方案,提出了一个简单的模型,并给出了模型预测与从单元内粒子(PIC)模拟获得的数值结果的比较。

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