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首页> 外文期刊>Physical Review X >Towards Terawatt-Scale Spectrally Tunable Terahertz Pulses via Relativistic Laser-Foil Interactions
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Towards Terawatt-Scale Spectrally Tunable Terahertz Pulses via Relativistic Laser-Foil Interactions

机译:通过相对论激光箔相互作用朝向Terawatt尺寸的光谱可调太赫兹脉冲

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摘要

An ever-increasing number of strong-field applications, such as ultrafast coherent control over matter and light, require driver light pulses that are both high power and spectrally tunable. The realization of such a source in the terahertz (THz) band has long been a formidable challenge. Here, we demonstrate, via experiment and theory, efficient production of terawatt (TW)-level THz pulses from high-intensity picosecond laser irradiation on a metal foil. It is shown that the THz spectrum can be manipulated effectively by tuning the laser pulse duration or target size. A general analytical framework for THz generation is developed, involving both the high-current electron emission and a time-varying electron sheath at the target rear, and the spectral tunability is found to stem from the change of the dominant THz generation mechanism. In addition to being an ultrabright source (brightness temperature of about 1021 K) for extreme THz science, the THz radiation presented here also enables a unique in situ laser-plasma diagnostic. Employing the THz radiation to quantify the escaping electrons and the transient sheath shows good agreement with experimental measurements.
机译:越来越多的强田应用,例如超薄相干控制优于物质和光线,需要驾驶员光脉冲,其既有高功率和可光谱可调。在太赫兹(THz)乐队中的这种来源的实现长期以来一直是一个强大的挑战。在这里,我们通过实验和理论展示,高效地生产Terawatt(TW)-Level THz脉冲,从金属箔上的高强度Picosecond激光照射。结果表明,可以通过调谐激光脉冲持续时间或目标尺寸来有效地操纵THz频谱。开发了一种用于THz生成的一般分析框架,涉及目标后部的高电流电子发射和时变电子护套,并且发现光谱可调性源于显性THz生成机制的变化。除了用于极端THZ科学的超级源(亮度温度为约1021 k),此处呈现的THZ辐射还使其成为原位激光等离子体诊断的独特辐射。采用THz辐射量化逸出的电子和瞬态护套显示出与实验测量的良好一致性。
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