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Sonographic probing of laser filaments in air

机译:空气中激光丝的超声探测

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The acoustic wave emitted from the plasma channel associated with a filament induced by a femtosecond laser pulse in air was detected with a microphone. This sonographic detection provides a new method to determine the length and the spatial profile of the free-electron density of a filament. The acoustic wave is emitted owing to the expansion of the gas in the filament, which is heated through collisions with high-energy photoelectrons generated by multiphoton ionization. Compared with other methods, the acoustic detection is simpler, more sensitive, and with higher spatial resolution, making it suitable for field measurements over kilometer-range distances or laboratory-scale studies on the fine structure of a filament.
机译:用麦克风检测从空气中飞秒激光脉冲感应出的与细丝相关的等离子体通道发射的声波。这种超声检测提供了一种确定灯丝自由电子密度的长度和空间分布的新方法。声波是由于灯丝中气体的膨胀而发出的,灯丝中的气体通过与多光子电离产生的高能光电子的碰撞而被加热。与其他方法相比,声波检测更简单,更灵敏,并且具有更高的空间分辨率,使其适合于在千米范围内进行现场测量或对细丝的精细结构进行实验室规模的研究。

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