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THz-Raman - Accessing molecular structure with Raman spectroscopy for enhanced chemical identification, analysis and monitoring

机译:THz-Raman-利用拉曼光谱法访问分子结构以增强化学识别,分析和监控

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Structural analysis via spectroscopic measurement of rotational and vibrational modes is of increasing interest for many applications, since these spectra can reveal unique and important structural and behavioral information about a wide range of materials. However these modes correspond to very low frequency (~5cm~(-1) - 200cm~(-1), or 150 GHz-6 THz) emissions, which have been traditionally difficult and/or expensive to access through conventional Raman and Terahertz spectroscopy techniques. We report on a new, inexpensive, and highly efficient approach to gathering ultra-low-frequency Stokes and anti-Stokes Raman spectra (referred to as "THz-Raman") on a broad range of materials, opening potential new applications and analytical tools for chemical and trace detection, identification, and forensics analysis. Results are presented on explosives, Pharmaceuticals, and common elements that show strong THz-Raman spectra, leading to clear discrimination of polymorphs, and improved sensitivity and reliability for chemical identification.
机译:通过光谱法测量旋转和振动模式的结构分析在许多应用中越来越受关注,因为这些光谱可以揭示有关各种材料的独特而重要的结构和行为信息。但是,这些模式对应于非常低的频率(〜5cm〜(-1)-200cm〜(-1)或150 GHz-6 THz)发射,传统上通过常规拉曼光谱和太赫兹光谱难以获得和/或昂贵技术。我们报告了一种新颖,廉价且高效的方法,可在多种材料上收集超低频斯托克斯和反斯托克斯拉曼光谱(称为“太赫兹拉曼”),从而开辟了潜在的新应用和分析工具用于化学和痕量检测,鉴定和法医分析。结果显示在炸药,药物和常见元素上,这些元素显示出很强的THz拉曼光谱,可清楚地区分多晶型物,并提高了化学鉴定的灵敏度和可靠性。

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