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Spatiotemporal visualization of the terahertz emission during high-power laser-matter interaction

机译:高功率激光器交互过程中太赫兹发射的时空可视化

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摘要

Single-cycle pulses with multimillion volts per centimeter field strengths and spectra in the terahertz (THz) band have attracted great interest due to their ability to coherently manipulate molecular orientations and electron spins resonantly and nonresonantly. The tremendous progress made in the development of compact and powerful terahertz sources have identified intense laser-thin foil interaction as a potential candidate for high-power broadband terahertz radiation. They are micrometers in size and deliver radially polarized terahertz pulses with millijoule energy and gigawatt peak power. Although several works have been carried out to investigate the terahertz generation process, their origin and angular distribution are still debated. We present here an indisputable study on their spatiotemporal characteristics and elaborate the underlying physical processes via recording the three-dimensional beam profile along with transient dynamics. These results are substructured with the quantitative visualization of the charge particle spectra.
机译:由于它们具有共度和非旋转的能力,具有每厘米场强度和太赫兹(THz)频段的距离每厘米场强度和光谱的单循环脉冲引起了极大的兴趣。在紧凑和强大的太赫兹来源开发方面取得的巨大进展已经确定了激光薄箔相互作用作为高功率宽带太赫兹辐射的潜在候选者。它们是尺寸的微米,并用毫链能量和吉伐峰值输送径向偏振的太赫兹脉冲。虽然已经进行了几种作品来调查太赫兹生成过程,但它们的起源和角度分布仍争论。我们在这里介绍了对它们的时空特性的无可争议的研究,并通过记录三维光束轮廓以及瞬态动力学来制定底层物理过程。这些结果具有对电荷粒子光谱的定量可视化来描述。

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