1 ICFO - The Institute of Photonic Sciences , Castelldefels (Barcelona) 08860 , Spain.
2 Blackett Laboratory , Imperial College London , Prince Consort Road , London SW7 2AZ , UK.
Philos Trans A Math Phys Eng Sci. 2019 May 20;377(2145):20170468. doi: 10.1098/rsta.2017.0468.
High harmonic generation (HHG) of an intense laser pulse is a highly nonlinear optical phenomenon that provides the only proven source of tabletop attosecond pulses, and it is the key technology in attosecond science. Recent developments in high-intensity infrared lasers have extended HHG beyond its traditional domain of the XUV spectral range (10-150 eV) into the soft X-ray regime (150 eV to 3 keV), allowing the compactness, stability and sub-femtosecond duration of HHG to be combined with the atomic site specificity and electronic/structural sensitivity of X-ray spectroscopy. HHG in the soft X-ray spectral region has significant differences from HHG in the XUV, which necessitate new approaches to generating and characterizing attosecond pulses. Here, we examine the challenges and opportunities of soft X-ray HHG, and we use simulations to examine the optimal generating conditions for the development of high-flux, attosecond-duration pulses in the soft X-ray spectral range. This article is part of the theme issue 'Measurement of ultrafast electronic and structural dynamics with X-rays'.
高强度激光脉冲的高次谐波产生(HHG)是一种高度非线性的光学现象,它提供了唯一经过验证的台式阿秒脉冲源,是阿秒科学的关键技术。最近高强度红外激光的发展将 HHG 扩展到了其传统的 XUV 光谱范围(10-150 eV)之外的软 X 射线区域(150 eV 至 3 keV),使得 HHG 的紧凑性、稳定性和亚飞秒持续时间与 X 射线光谱学的原子位置特异性和电子/结构敏感性相结合。软 X 射线光谱区域的 HHG 与 XUV 中的 HHG 有很大的不同,这需要新的方法来产生和表征阿秒脉冲。在这里,我们研究了软 X 射线 HHG 的挑战和机遇,并使用模拟来研究在软 X 射线光谱范围内发展高通量、阿秒持续时间脉冲的最佳产生条件。本文是主题为“用 X 射线测量超快电子和结构动力学”的一部分。