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Isotope quantum effects in the electron momentum density of water

机译:同位素量子效应在水电子动量密度中的作用

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The isotope quantum effects in the ground-state electron momentum density of water are studied at temperatures ranging from 5 to 90 deg C by combining Compton scattering experiments utilizing synchrotron radiation and computational analysis within density functional theory.We observe clear differences in the momentum density between normal and heavy water at room temperature,which are interpreted as predominantly reflecting intramolecular structural differences.The changes in the momentum density upon increasing the temperature are found to be larger for heavy than for normal water,which is attributed primarily to temperature-induced intramolecular structural effects.Both model computations and an ab initio approach qualitatively reproduce the changes in the momentum density as a function of temperature.
机译:通过利用同步加速器辐射的康普顿散射实验和密度泛函理论内的计算分析,在5至90摄氏度的温度下研究了水在基态电子动量密度中的同位素量子效应。室温下的正常水和重水被认为主要反映了分子内结构的差异。发现温度升高时,动量密度的变化比正常水要大,这主要归因于温度诱导的分子内结构模型计算和从头算方法都定性地再现了动量密度随温度变化的变化。

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