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Ultra-high dynamic range electro-optic sampling for detecting millimeter and sub-millimeter radiation

机译:用于探测毫米和亚毫米辐射的超高动态范围电光采样

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摘要

Time-domain spectroscopy using coherent millimeter and sub-millimeter radiation (also known as terahertz radiation) is rapidly expanding its application, owing greatly to the remarkable advances in generating and detecting such radiation. However, many current techniques for coherent terahertz detection have limited dynamic range, thus making it difficult to perform some basic experiments that need to directly compare strong and weak terahertz signals. Here, we propose and demonstrate a novel technique based on cross-polarized spectral-domain interferometry to achieve ultra-high dynamic range electro-optic sampling measurement of coherent millimeter and sub-millimeter radiation. In our scheme, we exploit the birefringence in a single-mode polarization maintaining fiber in order to measure the phase change induced by the electric field of terahertz radiation in the detection crystal. With our new technique, we have achieved a dynamic range of 7 × 106, which is 4 orders of magnitude higher than conventional electro-optic sampling techniques, while maintaining comparable signal-to-noise ratio. The present technique is foreseen to have great impact on experiments such as linear terahertz spectroscopy of optically thick materials (such as aqueous samples) and nonlinear terahertz spectroscopy, where the higher dynamic range is crucial for proper interpretation of experimentally obtained results.
机译:使用相干毫米和亚毫米辐射(也称为太赫兹辐射)的时域光谱技术正在迅速扩展其应用,这在很大程度上归因于在产生和检测此类辐射方面的显着进步。但是,许多当前用于相干太赫兹检测的技术具有有限的动态范围,因此使得难以执行一些需要直接比较强和弱太赫兹信号的基本实验。在这里,我们提出并演示了一种基于交叉极化光谱域干涉测量技术的新技术,可实现相干毫米和亚毫米辐射的超高动态范围电光采样测量。在我们的方案中,我们利用单模保偏光纤中的双折射来测量由检测晶体中太赫兹辐射电场引起的相位变化。通过我们的新技术,我们实现了7×10 6 的动态范围,比传统的电光采样技术高出4个数量级,同时保持了可比的信噪比。预计本技术将对诸如光学厚材料的线性太赫兹光谱(例如水性样品)和非线性太赫兹光谱等实验产生重大影响,其中较高的动态范围对于正确解释实验获得的结果至关重要。

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