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THz conductivities of indium-tin-oxide nanowhiskers as a graded-refractive-index structure

机译:氧化铟锡纳米晶须的THz电导率作为渐变折射率结构

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摘要

[[abstract]]Indium-tin-oxide (ITO) nanowhiskers with attractive electrical and anti-reflection properties were prepared by the glancing-angle electron-beam evaporation technique. Structural and crystalline properties of such nanostructures were examined by scanning transmission electron microscopy and X-ray diffraction. Their frequency-dependent complex conductivities, refractive indices and absorption coefficients have been characterized with terahertz time-domain spectroscopy (THz-TDS), in which the nanowhiskers were considered as a graded-refractive-index (GRIN) structure instead of the usual thin film model. The electrical properties of ITO GRIN structures are analyzed and fitted well with Drude-Smith model in the 0.2~2.0 THz band. Our results indicate that the ITO nanowhiskers and its bottom layer atop the substrate exhibit longer carrier scattering times than ITO thin films. This signifies that ITO nanowhiskers have an excellent crystallinity with large grain size, consistent with X-ray data. Besides, we show a strong backscattering effect and fully carrier localization in the ITO nanowhiskers.
机译:[[摘要]]通过掠角电子束蒸发技术制备了具有吸引人的电和抗反射性能的氧化铟锡(ITO)纳米晶须。通过扫描透射电子显微镜和X射线衍射检查了这种纳米结构的结构和晶体性质。它们的频率相关复数电导率,折射率和吸收系数已通过太赫兹时域光谱(THz-TDS)进行了表征,其中纳米晶须被认为是梯度折射率(GRIN)结构而不是通常的薄膜模型。对ITO GRIN结构的电学特性进行了分析,并与0.2〜2.0 THz频段的Drude-Smith模型很好地拟合。我们的结果表明,ITO纳米晶须及其在基材顶部的底层比ITO薄膜具有更长的载流子散射时间。这表明ITO纳米晶须具有优异的结晶度,且晶粒尺寸大,与X射线数据一致。此外,我们在ITO纳米晶须中显示出强大的反向散射效应和完全的载流子定位。

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    Chan-Shan Yang;

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  • 年度 2014
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  • 正文语种 [[iso]]en
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