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Terahertz Time Domain Spectroscopy of Amino Acids and Sugars.

机译:氨基酸和糖的太赫兹时域光谱。

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摘要

A time-domain spectrometer for use in the terahertz (THz) spectral range was designed and constructed. Due to there being few existing methods of generating and detecting THz radiation, the spectrometer is expected to have vast applications to solid, liquid, and gas phase samples. In particular, knowledge of complex organic chemistry and chemical abundances in the interstellar medium (ISM) can be obtained when compared to astronomical data. The THz spectral region is of particular interest due to reduced line density when compared to the millimeter wave spectrum, the existence of high resolution observatories, and potentially strong transitions resulting from the lowest-lying vibrational modes of large molecules.;The heart of the THz time-domain spectrometer (THz-TDS) is the ultrafast laser. Due to the femtosecond duration of ultrafast laser pulses and an energy-time uncertainty relationship, the pulses typically have a several-THz bandwidth. By various means of optical rectification, the optical pulse carrier envelope shape, i.e. intensity-time profile, can be transferred to the phase of the resulting THz pulse. As a consequence, optical pump-THz probe spectroscopy is readily achieved, as was demonstrated in studies of dye-sensistized TiO 2, as discussed in chapter 4. Detection of the terahertz radiation is commonly based on electro-optic sampling and provides full phase information. This allows for accurate determination of both the real and imaginary index of refraction, the so-called optical constants, without additional analysis. A suite of amino acids and sugars, all of which have been found in meteorites, were studied in crystalline form embedded in a polyethylene matrix. As the temperature was varied between 10 and 310 K, various strong vibrational modes were found to shift in spectral intensity and frequency. Such modes can be attributed to intramolecular, intermolecular, or phonon modes, or to some combination of the three.
机译:设计并构建了用于太赫兹(THz)光谱范围的时域光谱仪。由于现有的产生和检测太赫兹辐射的方法很少,因此该光谱仪有望广泛应用于固体,液体和气相样品。特别是,与天文数据相比,可以获得星际介质(ISM)中复杂的有机化学和化学丰度的知识。由于与毫米波光谱相比线密度降低,高分辨率观测站的存在以及大分子的最低振动模式产生的潜在强跃迁,太赫兹(THz)光谱区域特别令人关注。时域光谱仪(THz-TDS)是超快激光器。由于超快激光脉冲的飞秒持续时间和能量时间不确定性关系,这些脉冲通常具有几THz的带宽。通过各种光学整流,可以将光脉冲载流子的包络形状,即强度-时间分布,转移到所产生的太赫兹脉冲的相位上。结果,如第4章所讨论的,在染料染色的TiO 2的研究中已证明,光泵THz探针光谱很容易实现。太赫兹辐射的检测通常基于电光采样并提供全相信息。 。这允许精确确定实折射率和虚折射率,即所谓的光学常数,而无需另外的分析。对陨石中发现的所有氨基酸和糖类进行了研究,发现它们以结晶形式包埋在聚乙烯基质中。当温度在10到310 K之间变化时,发现各种强振动模式会改变光谱强度和频率。此类模式可归因于分子内,分子间或声子模式,或这三种模式的某种组合。

著录项

  • 作者

    Kelley, Matthew.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Chemistry Physical.;Chemistry Analytical.;Physics Astrophysics.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:16

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