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首页> 外文期刊>Journal of physical chemistry letters >Direct Measurements of Quantum Kinetic Energy Tensor in Stable and Metastable Water near the Triple Point: An Experimental Benchmark
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Direct Measurements of Quantum Kinetic Energy Tensor in Stable and Metastable Water near the Triple Point: An Experimental Benchmark

机译:在三点附近的稳定和亚稳态水中直接测量量子动能张量:实验基准

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摘要

This study presents the first direct and quantitative measurement of the nuclear momentum distribution anisotropy and the quantum kinetic energy tensor in stable and metastable (supercooled) water near its triple point, using deep inelastic neutron scattering (DINS). From the experimental spectra, accurate line shapes of the hydrogen momentum distributions are derived using an anisotropic Gaussian and a model-independent framework. The experimental results, benchmarked with those obtained for the solid phase, provide the state of the art directional values of the hydrogen mean kinetic energy in metastable water. The determinations of the direction kinetic energies in the supercooled phase, provide accurate and quantitative measurements of these dynamical observables in metastable and stable phases, that is, key insight in the physical mechanisms of the hydrogen quantum state in both disordered and polycrystalline systems. The remarkable findings of this study establish novel insight into further expand the capacity and accuracy of DINS investigations of the nuclear quantum effects in water and represent reference experimental values for theoretical investigations.
机译:这项研究提出了使用深层非弹性中子散射(DINS)对三态附近稳定和亚稳态(过冷)水中核动量分布各向异性和量子动能张量的首次直接定量测量。从实验光谱中,使用各向异性高斯和独立于模型的框架得出氢动量分布的精确线形。以固相获得的那些为基准的实验结果提供了亚稳态水中氢平均动能的最新技术方向值。对过冷相中方向动能的确定,为亚稳态和稳定相中的这些动态可观测物提供了准确和定量的测量,即对无序和多晶系统中氢量子态物理机理的关键见解。这项研究的显着发现为进一步扩展DINS研究水中核量子效应的能力和准确性提供了新的见识,并代表了理论研究的参考实验值。

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