Terahertz Radiation from Shockwave Front Irradiated with Femtosecond Optical Pulses

Takeshi Nagashima, Hsinhui Huang, Koji Hatanaka
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Abstract

Femtosecond double optical pulse experiments with nanosecond time delay were conducted in air. Terahertz pulses were generated from laser plasmas produced by the irradiation with the main pulses on shockwave excited by the pre-pulse illumination. Intensity of the terahertz pulses depends on the time difference Δt and relative position Δy between the pre- and main pulses. We found a characteristic dependence of the intensity of the terahertz pulses on Δy at a longer time delay, Δt=14.7 ns, which has two maxima while only one maximum was observed when delay times were at and shorter than 9.7 ns. The results are discussed taking into account air density distribution of the shockwave. The terahertz emission spectroscopy shown here can be a useful technique for investigating density structure and its time variation of shockwave with high temporal resolution.
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飞秒光脉冲辐照的冲击波前太赫兹辐射
在空气中进行了纳秒延时飞秒双光脉冲实验。太赫兹脉冲是由主脉冲在预脉冲照明激发的冲击波上辐照产生的激光等离子体产生的。太赫兹脉冲的强度取决于前脉冲和主脉冲之间的时间差Δt和相对位置Δy。我们发现太赫兹脉冲的强度在较长的时间延迟Δt=14.7 ns时对Δy的特性依赖,它有两个最大值,而在延迟时间等于和小于9.7 ns时只观察到一个最大值。考虑了冲击波的空气密度分布,对结果进行了讨论。本文所示的太赫兹发射光谱可以作为一种高时间分辨率研究冲击波密度结构及其时间变化的有用技术。
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