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Generation of radially-polarized terahertz pulses for coupling into coaxial waveguides

机译:产生径向极化的太赫兹脉冲,用于耦合到同轴波导中

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摘要

Coaxial waveguides exhibit no dispersion and therefore can serve as an ideal channel for transmission of broadband THz pulses. Implementation of THz coaxial waveguide systems however requires THz beams with radially-polarized distribution. We demonstrate the launching of THz pulses into coaxial waveguides using the effect of THz pulse generation at semiconductor surfaces. We find that the radial transient photo-currents produced upon optical excitation of the surface at normal incidence radiate a THz pulse with the field distribution matching the mode of the coaxial waveguide. In this simple scheme, the optical excitation beam diameter controls the spatial profile of the generated radially-polarized THz pulse and allows us to achieve efficient coupling into the TEM waveguide mode in a hollow coaxial THz waveguide. The TEM quasi-single mode THz waveguide excitation and non-dispersive propagation of a short THz pulse is verified experimentally by time-resolved near-field mapping of the THz field at the waveguide output.
机译:同轴波导没有色散,因此可以用作传输宽带太赫兹脉冲的理想通道。然而,太赫兹同轴波导系统的实现需要具有径向极化分布的太赫兹光束。我们展示了利用半导体表面太赫兹脉冲产生的影响将太赫兹脉冲发射到同轴波导中。我们发现,在垂直入射时通过表面光学激发产生的径向瞬态光电流会辐射出一个THz脉冲,其场分布与同轴波导的模式匹配。在这种简单的方案中,光激发光束的直径控制着所产生的径向极化的太赫兹脉冲的空间分布,并使我们能够在空心同轴太赫兹波导中实现与TEM波导模式的有效耦合。通过在波导输出端对THz场进行时间分辨近场映射,通过实验验证了TEM准单模THz波导激励和短THz脉冲的非色散传播。

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