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A Sensitive and Versatile Thickness Determination Method Based on Non-Inflection Terahertz Property Fitting

机译:基于非变形太赫兹特性拟合的灵敏通用的厚度确定方法

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摘要

The accuracy of thin-film characterization in terahertz spectroscopy is mainly set by the thickness uncertainty. Physical thickness measurement has limited accuracy for thin-film samples thinner than a few hundreds of micrometers and is sometimes even impossible. The temporal resolution of time-domain terahertz spectrometers is not sufficient to resolve such thin films. Previously reported numerical methods mainly only work for materials with low dispersion and absorption. Here, we propose a novel method for thickness determination by fitting a non-inflection offset exponential function to the material optical properties. Theoretical analysis predicts the best fitting to only be achieved when the correct thickness is given. Transmission measurements on a thin-film polymer, water, and a lactose pallet verify the theory and show the accurate thickness determination and property characterization on materials which are either achromatic or dispersive, transparent or absorptive, featureless or resonant. The measurements demonstrate the best versatility and sensitivity compared to the state-of-art. The method could be widely adapted to various types of research and industrial applications.
机译:太赫兹光谱中薄膜表征的准确性主要由厚度不确定性决定。对于小于几百微米的薄膜样品,物理厚度测量的准确性受到限制,有时甚至是不可能的。时域太赫兹光谱仪的时间分辨率不足以分辨这种薄膜。先前报道的数值方法主要仅适用于色散和吸收率低的材料。在此,我们提出了一种通过将非拐点偏移指数函数拟合到材料光学特性的厚度确定的新方法。理论分析预测,只有给出正确的厚度,才能实现最佳拟合。在薄膜聚合物,水和乳糖托盘上的透射测量结果验证了这一理论,并显示了对消色差或色散,透明或吸收,无特征或共振的材料的准确厚度确定和性能表征。与最新技术相比,这些测量结果显示出最佳的多功能性和灵敏度。该方法可广泛适用于各种类型的研究和工业应用。

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