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Low noise spinning wheel technique for THz material parameter extraction

机译:低噪音纺车技术用于太赫兹材料参数提取

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摘要

Double-modulated terahertz differential time-domain spectroscopy (double-modulated THz-DTDS), is a technique that is based on dithering the sample under test. In this paper, we report a measurement technique based on mounting the sample on a spinning wheel, in order to overcome fundamental limitations imposed by linear dithering. We demonstrate a proof-of-principle showing that noise decreases as a function of the spinning wheel modulation frequency. This technique does not suffer the mechanical noise limitation of traditional linear dithering and thus opens up future scope for further noise reduction via hardware advances in the modulation frequency of the wheel. The spinning wheel technique enables a rapid succession of measurements between the reference and sample signals with a single mechanical delay scan. As a result, an improvement in measurement time by at least a factor of two, as compared to the conventional THz-TDS measurement technique is observed. The spinning wheel technique is experimentally verified by measuring the dielectric properties of a thick polymer material.
机译:双调制太赫兹差分时域光谱法(双调制太赫兹-DTDS)是一种基于抖动被测样品的技术。在本文中,我们报告了一种基于将样品安装在纺车上的测量技术,以克服线性抖动带来的基本限制。我们证明了一个原理证明,表明噪声随着旋转轮调制频率的降低而降低。该技术不受传统线性抖动的机械噪声限制,因此通过车轮调制频率的硬件改进为进一步降低噪声开辟了未来的空间。纺车技术可通过一次机械延迟扫描在参考信号和样本信号之间快速连续进行测量。结果,与常规的THz-TDS测量技术相比,观察到测量时间至少缩短了两倍。通过测量厚聚合物材料的介电性能,通过实验验证了纺车技术。

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