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Phase-Insensitive Scattering of Terahertz Radiation

机译:太赫兹辐射的相位不敏感散射

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摘要

The nonlinear interaction between Near-Infrared (NIR) and Terahertz pulses is principally investigated as a means for the detection of radiation in the hardly accessible THz spectral region. Most studies have targeted second-order nonlinear processes, given their higher efficiencies, and only a limited number have addressed third-order nonlinear interactions, mainly investigating four-wave mixing in air for broadband THz detection. We have studied the nonlinear interaction between THz and NIR pulses in solid-state media (specifically diamond), and we show how the former can be frequency-shifted up to UV frequencies by the scattering from the nonlinear polarisation induced by the latter. Such UV emission differs from the well-known electric field-induced second harmonic (EFISH) one, as it is generated via a phase-insensitive scattering, rather than a sum- or difference-frequency four-wave-mixing process.
机译:主要研究近红外(NIR)与太赫兹脉冲之间的非线性相互作用,作为检测难以接近的THz频谱区域中辐射的一种手段。由于效率较高,大多数研究都针对二阶非线性过程,只有极少数研究了三阶非线性相互作用,主要研究了在空中进行四波混频以进行宽带太赫兹检测。我们研究了固态介质(特别是金刚石)中THz和NIR脉冲之间的非线性相互作用,并展示了如何通过后者引起的非线性极化的散射将其前移到UV频率。这种紫外线发射与众所周知的电场感应二次谐波(EFISH)不同,因为它是通过对相位不敏感的散射而不是和频或差频四波混合过程产生的。

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