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Generation of Broadband THz Pulses by Laser Wakefield at Radial Boundary of Plasma Column

机译:激光韦克菲尔德在等离子柱径向边界的宽带THz脉冲的产生

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Photoionization of an ambient gas by a tightly focused, femtosecond, weakly relativistic laser pulse leaves behind the pulse a column of electron density (a “filament”). At the column surface, the density drops to zero within a thin (micron-scale) boundary layer. Ponderomotive force of the pulse drives within the filament a cylindrical wave of charge separation (laser wake). If the pulse waist size is much smaller than the Langmuir wavelength, electron current in the wake is mostly transverse. In the filament surface area, this current rapidly decays (electrons, crossing the sharp density gradient, phase out of wake within a few Langmuir oscillation cycles.) Coupling electron wake velocity to the sharp radial density gradient generates at the filament surface a short-lived, almost aperiodic rotational current. This current serves as a source for a broadband THz electromagnetic pulse co-moving with the wake. As long as the background gas is uniform, the wake phase velocity is slightly subluminal, and the THz pulse is evanescent in the radial direction. The evanescence is, however, slow, occurring on a millimeter to centimeter length scale. Properties of the evanescent THz pulse contain information on the wake currents, and may thus serve as optical diagnostics.
机译:通过紧密聚焦的Femtosecond,弱相对论的激光脉冲在脉冲后面的脉冲的一列电子密度(“丝绒”)的光离心,弱相对主义的光相。在柱表面,密度在薄(微米级)边界层内下降至零。脉冲在灯丝内的倾角力驱动电荷分离(激光唤醒)的圆柱形波。如果脉冲腰部尺寸远小于Langmuir波长,则唤醒中的电子电流大多是横向的。在灯丝表面区域中,该电流快速衰减(电子,穿过尖锐的密度梯度,在几个Langmuir振荡循环内逐渐逐渐抖动。)耦合电子唤醒速度与尖锐的径向密度梯度在灯丝表面产生短寿命,几乎是非周期性的旋转电流。该电流用作宽带THZ电磁脉冲共同移动的源。只要背景气体均匀,唤醒阶段速度略微向羽流子,并且THz脉冲在径向方向上是渐变的。然而,在毫米到厘米长度尺度上发生速度慢。渐变THz脉冲的特性包含有关唤醒电流的信息,因此可以用作光学诊断。

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