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Diffraction in low-energy electron scattering from DNA: Bridging gas-phase and solid-state theory

机译:来自DNA的低能电子散射中的衍射:弥合气相和固态理论

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摘要

Using high-quality gas phase electron scattering calculations and multiple scattering theory, we attempt to gain insights into the radiation damage to DNA induced by secondary low-energy electrons in the condensed phase, and to bridge the existing gap with the gas phase theory and experiments. The origin of different resonant features (arising from single molecules or diffraction) is discussed and the calculations are compared to existing experiments in thin films.
机译:使用高质量的气相电子散射计算和多重散射理论,我们试图深入了解凝结相中次级低能电子对DNA的辐射损伤,并用气相理论和实验弥合现有的差距。讨论了不同共振特征的起源(源自单个分子或衍射),并将计算结果与薄膜中的现有实验进行了比较。

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