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Near-field far-field modelling of a sub-wavelength THz source

机译:亚波长太赫兹源的近场和远场建模

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The THz emission point on a nonlinear electro-optical crystal for generating broadband THz radiation is modeled as a radiating Gaussian aperture. With the wavelengths of the infrared pump beam being much smaller than the wavelength components of the generated THz pulse, a THz sub-wavelength radiating aperture with Gaussian profile is effectively created. This paper investigates this general modelling approach for focused THz radiation generation in electro-optical crystals. Different implementations are employed for the near- and far-field regime. While a numerical approach is required to characterize near-field intensity distributions, a semi-analytical model is sufficient for far-field considerations. The near-field study has ramifications in THz near-field focused beam techniques while far-field investigations elucidate the radiation pattern shape and hence the detectable SNR.
机译:非线性电光晶体上用于产生宽带太赫兹辐射的太赫兹发射点被建模为辐射高斯孔径。通过使红外泵浦光束的波长远小于所产生的太赫兹脉冲的波长分量,可以有效地创建具有高斯分布的太赫兹亚波长辐射孔径。本文研究了这种在电光晶体中聚焦THz辐射产生的通用建模方法。近场和远场体制采用不同的实现方式。虽然需要一种数值方法来表征近场强度分布,但对于远场考虑而言,半分析模型就足够了。近场研究对太赫兹近场聚焦波束技术产生了影响,而远场研究则阐明了辐射方向图的形状,从而确定了可检测的SNR。

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