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Influence of two-photon absorption and optical excitation size on the THz radiation via optical rectification

机译:双光子吸收和光激发大小对光整流后太赫兹辐射的影响

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Although the ZnTe crystal used the generation of THz radiation has a favorable phase matching properties at 820nm, it has strong third-order nonlinearity, such as two-photon absorption effect. And we found experimentally that, the effect of two-photon absorption in ZnTe on the THz radiation was not neglect. In addition, due to optical rectification and diffraction effect, the generated efficiency of THz radiation is also related to the optical excitation size in the emitter. In this paper, by taking into account optical rectification, diffraction and two-photon absorption effects, the theoretical model is established to describe the emitting field intensity of THz radiation. There is excellent agreement between the theoretical results and the experimental data. The good agreement demonstrates that there is a trade-off between these three effects for THz radiation.
机译:尽管用于产生THz辐射的ZnTe晶体在820nm处具有良好的相位匹配特性,但它具有很强的三阶非线性,例如双光子吸收效应。并且我们通过实验发现,ZnTe中的两个光子吸收对太赫兹辐射的影响不容忽视。另外,由于光学整流和衍射效应,产生的太赫兹辐射效率也与发射器中的光激发尺寸有关。本文通过考虑光学整流,衍射和双光子吸收效应,建立了描述太赫兹辐射发射场强度的理论模型。理论结果和实验数据之间有很好的一致性。良好的协议表明,在太赫兹辐射的这三个效应之间需要权衡。

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