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Classical trajectories in polar-asymmetric laser fields: Synchronous THz and XUV emission

机译:极不对称激光场中的经典轨迹:同步太赫兹和XUV发射

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摘要

The interaction of intense near- and mid-infrared laser pulses with rare gases has produced bursts of radiation with spectral content extending into the extreme ultraviolet and soft x-ray region of electromagnetic spectrum. On the other end of the spectrum, laser-driven gas plasmas has been shown to produce coherent sub-harmonic optical waveforms, covering from terahertz (THz) to mid- and near-infrared frequency spectral band. Both processes can be enhanced via a combination of a driving field and its second harmonic. Despite this striking similarity, only limited experimental and theoretical attempts have been made to address these two regimes simultaneously. Here we present systematic experiments and a unifying picture of these processes, based on our extension of the semi-classical three-step model. Further understanding of the generation and coherent control of time-synchronized transients with photon energies from meV to 1 keV can lead to numerous technological advances and to an intriguing possibilities of ultra-broadband investigations into complex condensed matter systems.
机译:强烈的近红外和中红外激光脉冲与稀有气体的相互作用产生了一系列辐射,辐射的光谱范围扩展到电磁光谱的极紫外和软X射线区域。在频谱的另一端,已证明激光驱动的气体等离子体会产生相干的次谐波光学波形,覆盖从太赫兹(THz)到中红外和近红外频段。可以通过结合驱动场及其二次谐波来增强这两个过程。尽管存在这种惊人的相似性,但仅进行了有限的实验和理论尝试来同时解决这两种情况。在此,我们基于对半经典三步模型的扩展,给出了系统的实验和这些过程的统一图景。对从meV到1 keV的光子能量的时间同步瞬变的产生和相干控制的进一步理解,可以带来许多技术进步,并带来对复杂的凝聚态系统进行超宽带研究的引人入胜的可能性。

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