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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Guiding microwave radiation using laser-induced filaments: The hollow conducting waveguide concept
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Guiding microwave radiation using laser-induced filaments: The hollow conducting waveguide concept

机译:使用激光感应灯丝引导微波辐射:中空传导波导概念

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A microwave waveguide that consists of a set of laser plasma filaments produced in air by the propagation of femtosecond laser pulses is investigated according to the hollow conducting waveguide concept. The conductivity, skin depth of the electromagnetic waves in this plasma waveguide and the energy required to excite such a waveguide are calculated for different possible configurations. A hollow conducting plasma waveguide is shown to support guided modes of electromagnetic radiation from millimetre to centimetre wavelength range. Our calculations show that, under the concept of conducting waveguide, it is more suitable to use the TE _(01) mode rather than TE _(11) to achieve an extended attenuation length. The attenuation length of the low-loss mode TE _(01) is shown to be dependent on the geometry of the plasma waveguides, the operating frequency and the plasma effective electron density. The effect of the plasma wall density spread on TE _(01) propagation is evaluated. Using the hollow conducting plasma waveguide operating in TE _(01) mode, an enhancement of microwave transmission over both free space propagation and dielectric plasma waveguide is obtained.
机译:根据中空导电波导的概念,研究了一种微波波导,该波导由一组通过飞秒激光脉冲在空气中产生的激光等离子体细丝组成。对于不同的可能配置,计算了该等离子体波导中的电导率,电磁波的趋肤深度以及激发这种波导所需的能量。示出了中空导电等离子体波导以支持从毫米到厘米波长范围的电磁辐射的引导模式。我们的计算表明,在传导波导的概念下,使用TE _(01)模式而不是TE _(11)模式来实现更长的衰减长度更为合适。低损耗模式TE_(01)的衰减长度显示为取决于等离子体波导的几何形状,工作频率和等离子体有效电子密度。评估了等离子体壁密度分布对TE_(01)传播的影响。使用以TE_(01)模式工作的中空导电等离子体波导,可以增强微波在自由空间传播和介电等离子体波导上的传输。

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