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Comparison of the THz absorption feature in lactose to related saccharides

机译:乳糖与相关糖类的THz吸收特征的比较

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Solid-state organic compounds such as α-lactose-monohydrate and biotin have been shown to have narrow and intense THz absorption features at room temperature. Interest in lineshapes in the THz region is justified not only for practical reasons, since they are of crucial importance to spectroscopy-based identification of materials, but also because of the information the line-widths contain about the solid-state physics of the materials. The line-width of THz absorption features (generally from lattice vibrations) in solids is excepted to be inversely proportional to the scattering time of optical phonons. The line-width of absorption features might thus have implications on the solid-state physics of the material, in particular, the interaction of phonons and the phonon density of states. We use a continuous wave THz photomixing system to obtain a high resolution spectrum of α-lactose-mohohydrate and analyze two of its lowest-frequency absorption lines. For comparison we measure the transmission spectra of 5 chemically related saccharides: melecitose, trehalose, maltose, cellobiose, and raffinose. Since α-lactose-monohydrate has a stronger and narrower absorption feature than any of its related saccharides, this comparison study is an important step in understanding the mechanism of THz radiation absorption by organic solids and what line-widths to expect in THz spectroscopy.
机译:固态有机化合物(例如一水合乳糖和生物素)在室温下具有窄而强烈的THz吸收特性。对THz区域中的线形感兴趣的原因不仅是出于实际原因,因为它们对于基于光谱的材料识别至关重要,而且还因为线宽包含有关材料的固态物理特性的信息。固体中太赫兹吸收特征(通常来自晶格振动)的线宽与光学声子的散射时间成反比。因此,吸收特征的线宽可能对材料的固态物理学有影响,特别是声子的相互作用和状态的声子密度。我们使用连续波太赫兹光混合系统来获得高分辨率的α-乳糖-糖合水合物光谱,并分析了其最低频率的两条吸收线。为了进行比较,我们测量了5种化学相关糖类的透射光谱:大分子糖,海藻糖,麦芽糖,纤维二糖和棉子糖。由于α-乳糖一水合物比其任何相关糖类具有更强和更窄的吸收特性,因此这项比较研究是理解有机固体吸收THz辐射的机理以及在THz光谱中期望达到的线宽的重要一步。

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