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Real-time broadband terahertz spectroscopic imaging by using a high-sensitivity terahertz camera

机译:使用高灵敏度太赫兹相机实时宽带太赫兹光谱成像

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摘要

Terahertz (THz) imaging has a strong potential for applications because many molecules have fingerprint spectra in this frequency region. Spectroscopic imaging in the THz region is a promising technique to fully exploit this characteristic. However, the performance of conventional techniques is restricted by the requirement of multidimensional scanning, which implies an image data acquisition time of several minutes. In this study, we propose and demonstrate a novel broadband THz spectroscopic imaging method that enables real-time image acquisition using a high-sensitivity THz camera. By exploiting the two-dimensionality of the detector, a broadband multi-channel spectrometer near 1 THz was constructed with a reflection type diffraction grating and a high-power THz source. To demonstrate the advantages of the developed technique, we performed molecule-specific imaging and high-speed acquisition of two-dimensional (2D) images. Two different sugar molecules (lactose and D-fructose) were identified with fingerprint spectra, and their distributions in one-dimensional space were obtained at a fast video rate (15 frames per second). Combined with the one-dimensional (1D) mechanical scanning of the sample, two-dimensional molecule-specific images can be obtained only in a few seconds. Our method can be applied in various important fields such as security and biomedicine.
机译:太赫兹(THz)成像具有强大的应用潜力,因为许多分子在该频率范围内具有指纹图谱。太赫兹区域的光谱成像是充分利用这一特性的有前途的技术。但是,常规技术的性能受到多维扫描要求的限制,这意味着几分钟的图像数据获取时间。在这项研究中,我们提出并演示了一种新颖的宽带太赫兹光谱成像方法,该方法能够使用高灵敏度太赫兹相机进行实时图像采集。通过利用探测器的二维特性,构建了一个1 THz附近的宽带多通道光谱仪,该光谱仪具有反射型衍射光栅和高功率THz源。为了证明所开发技术的优势,我们进行了分子特异性成像和二维(2D)图像的高速采集。用指纹图谱鉴定了两个不同的糖分子(乳糖和D-果糖),并以快速的视频速率(每秒15帧)获得了它们在一维空间中的分布。结合样品的一维(1D)机械扫描,仅需几秒钟即可获得二维分子特异性图像。我们的方法可以应用于各种重要领域,例如安全性和生物医学。

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