首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Charge Transport in src='/images/tex/20830.gif' alt='{hbox {TiO}}_{2}'> Films With Complex Percolation Pathways Investigated by Time-Resolved Terahertz Spectroscopy
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Charge Transport in src='/images/tex/20830.gif' alt='{hbox {TiO}}_{2}'> Films With Complex Percolation Pathways Investigated by Time-Resolved Terahertz Spectroscopy

机译: src =“ / images / tex / 20830.gif” alt =“ {hbox {TiO}} _ {2}”> 具有复杂渗流途径的薄膜中的电荷传输通过时间分辨太赫兹光谱

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摘要

The depolarization fields play an important role in terahertz experiments on nanostructured samples with complex nanoparticle morphologies and percolation pathways. Namely, their effects can hide or distort peculiarities of nanoscopic charge transport in the spectra measured on these structures. We calculate the local fields for a large number of percolated and non-percolated two-dimensional model structures by numerical solving of Maxwell equations in the quasi-static limit. The results strongly suggest that in a broad family of structures a simple effective medium approximation model can be applied to characterize the effective response. The model consists in an equivalent circuit composed of a resistance accounting for the percolated chains with an additional parallel RC-branch describing the non-percolated part. The physical meaning of this model is discussed in the frame of the Bergman spectral representation of effective medium. We show a recipe for the retrieval of a response connected to the depolarization fields and to the nanoscale transport mechanisms from transient terahertz spectra. Finally, we use the model to interpret our THz photoconductivity spectra in various ${hbox{TiO}}_{2}$ films with nanofabricated percolation pathways.
机译:去极化场在太赫兹实验中具有复杂的纳米颗粒形态和渗透途径的纳米结构样品中起着重要作用。即,它们的作用可以掩盖或扭曲在这些结构上测量的光谱中的纳米电荷传输的特性。我们通过准静态极限中的麦克斯韦方程组的数值求解来计算大量渗滤和非渗滤二维模型结构的局部场。结果强烈表明,在广泛的结构家族中,可以应用简单的有效介质近似模型来表征有效响应。该模型由一个等效电路组成,该等效电路由一个考虑了渗透链的电阻组成,并带有一个描述未渗透部分的附加并行RC分支。在有效介质的伯格曼光谱表示的框架中讨论了该模型的物理含义。我们展示了一种方法,用于检索与去极化场和瞬态太赫兹光谱的纳米级传输机制有关的响应。最后,我们使用该模型来解释各种 $ {hbox {TiO}} _ {2} $ 中的THz光电导谱具有纳米制造的渗流途径的薄膜。

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