固体中的高次谐波产生:粒子和波的视角。

Liang Li, Pengfei Lan, Xiaosong Zhu, Peixiang Lu
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引用次数: 1

摘要

气相原子(或分子)的高次谐波产生(HHG)为超快光学开辟了一个新的前沿,可以获得阿秒时间分辨率和埃空间分辨率。HHG的基本物理图像通常用激光诱导的类粒子电子运动的再碰撞来解释,这为阿秒光谱奠定了基础。近年来,在固体中也观察到了HHG。如果提供了一种能够解析超快动力学的描述,人们可以预期阿秒光谱将扩展到凝聚态。因此,已经提出了大量的理论研究来理解固体HHG的潜在物理。在这里,我们回顾了固体HHG中的再碰撞图像,展示了当前粒子透视方法的一些挑战,并介绍了最近开发的波透视惠更斯-菲涅耳图像,用于理解强场物理学范围内的动力学系统。
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High harmonic generation in solids: particle and wave perspectives.

High harmonic generation (HHG) from gas-phase atoms (or molecules) has opened up a new frontier in ultrafast optics, where attosecond time resolution and angstrom spatial resolution are accessible. The fundamental physical pictures of HHG are always explained by the laser-induced recollision of particle-like electron motion, which lay the foundation of attosecond spectroscopy. In recent years, HHG has also been observed in solids. One can expect the extension of attosecond spectroscopy to the condensed matter if a description capable of resolving the ultrafast dynamics is provided. Thus, a large number of theoretical studies have been proposed to understand the underlying physics of solid HHG. Here, we revisit the recollision picture in solid HHG and show some challenges of current particle-perspective methods, and present the recently developed wave-perspective Huygens-Fresnel picture for understanding dynamical systems within the ambit of strong-field physics.

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