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Radiating pattern of surge-current-induced THz light in near-field and far-field zone

机译:浪涌电流感应的太赫兹光在近场和远场区域的辐射方向图

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摘要

We generate the THz wave on the surface of an unbiased GaAs crystal by illuminating femtosecond laser pulses with a 45° incidence angle, and investigate its propagation properties comprehensively both in a near-field and in a far-field zone by performing a knife-edge scan measurement. In the near-field zone, i.e. 540 μm away from the generation point, we found that the beam simply takes a Gaussian shape of which width follows well a behavior predicted by a paraxial wave equation. In the far-field zone, on the other hand, it takes a highly anisotropic shape; whereas the beam profile maintains a Gaussian shape along the normal to the plane of incidence, it takes satellite peak structures along the direction in parallel to the plane of incidence. From the comparison with simulation results obtained by using a dipole radiation model, we demonstrated that this irregular beam pattern is attributed to the combined effect of the position-dependent phase retardation of the THz waves and the diffraction-limited size of the initial beam which lead to the interference of the waves in the far-field zone. Also, we found that this consideration accounting for a crossover of THz beam profile to the anisotropic non-Gaussian beam in the far-field zone can be applied for a comprehensive understanding of several other THz beam profiles obtained previously in different configurations.
机译:我们通过以45°入射角照射飞秒激光脉冲,在无偏GaAs晶体的表面上产生太赫兹波,并通过使用刀刃技术全面研究其在近场和远场区域的传播特性扫描测量。在离生成点540μm的近场区域中,我们发现光束只是呈高斯形状,其宽度很好地遵循了近轴波方程所预测的行为。另一方面,在远场区域,它具有高度各向异性的形状。光束轮廓沿入射平面的法线保持高斯形状,而沿平行于入射平面的方向获得卫星峰值结构。通过与使用偶极子辐射模型获得的仿真结果进行比较,我们证明了这种不规则的光束模式归因于太赫兹波的位置相关相位延迟和初始光束的衍射极限尺寸的综合作用,导致受远场区域中波的干扰的影响。此外,我们发现,考虑到THz光束轮廓与远场区域中的各向异性非高斯光束交叉的考虑,可以用于全面理解以前在不同配置中获得的其他几种THz光束轮廓。

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