论文标题

具有高度重复速率非线性THZ科学,千瓦级级低于100 FS激光源

Enabling high repetition rate nonlinear THz science with a kilowatt-class sub-100 fs laser source

论文作者

Kramer, Patrick L., Windeler, Matthew, Mecseki, Katalin, Champenois, Elio G., Hoffmann, Matthias C., Tavella, Franz

论文摘要

在X射线游离电子激光器(FELS)探测响应的同时,用强壮的Terahertz(THZ)磁场操纵物质的原子和电子结构,为在固态和原子物理学中的多种物理现象中提供了独特的见解。最近对X射线FEL设施的升级正在推动更高的重复率,从而使泵探头实验的噪声前所未有的信号。这需要开发合适的THZ泵源,这些泵源能够以兼容的重复速率提供强烈的脉冲。在这里,我们使用倾斜的脉冲前泵基于LINBO3的光学整流,提出了一个高功率激光驱动的THZ源。我们的来源是由千瓦级YB:YAG放大器系统以100 kHz的重复速率运行的,并采用非线性光谱拓宽和重新压缩以在1030 nm波长下实现低于100的FS脉冲。我们展示了最大144兆瓦的平均THz功率(1.44 UJ脉冲能),由以0.6 THz为中心的单周期脉冲组成,峰值电场强度超过150 kV/cm。这些高场脉冲为非线性时间分辨实验开辟了一系列可能性,并以前所未有的速率进行X射线探测。

Manipulating the atomic and electronic structure of matter with strong terahertz (THz) fields while probing the response with ultrafast pulses at x-ray free electron lasers (FELs) has offered unique insights into a multitude of physical phenomena in solid state and atomic physics. Recent upgrades of x-ray FEL facilities are pushing to much higher repetition rates, enabling unprecedented signal to noise for pump probe experiments. This requires the development of suitable THz pump sources that are able to deliver intense pulses at compatible repetition rates. Here we present a high power laser-driven THz source based on optical rectification in LiNbO3 using tilted pulse front pumping. Our source is driven by a kilowatt-level Yb:YAG amplifier system operating at 100 kHz repetition rate and employing nonlinear spectral broadening and recompression to achieve sub-100 fs pulses at 1030 nm wavelength. We demonstrate a maximum of 144 mW average THz power (1.44 uJ pulse energy), consisting of single-cycle pulses centered at 0.6 THz with a peak electric field strength exceeding 150 kV/cm. These high field pulses open up a range of possibilities for nonlinear time-resolved experiments with x-ray probing at unprecedented rates.

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