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氢在氖稀释液体混合物中的自动力学:非弹性中子散射研究。

Hydrogen self-dynamics in diluted liquid mixtures with neon: An inelastic neutron scattering study.

机构信息

Consiglio Nazionale delle Ricerche, Istituto di Fisica Applicata "N. Carrara", via Madonna del Piano 10, I-50019 Sesto Fiorentino, Italy.

Fakultät für Physik der Universität Wien, Strudlhofgasse 4, A-1090 Wien, Austria.

出版信息

Phys Rev E. 2019 Jan;99(1-1):012138. doi: 10.1103/PhysRevE.99.012138.

Abstract

We have measured the dynamic structure factor of liquid neon-hydrogen mixtures (T=30.1 K) at two different H_{2} concentration levels (namely, 3.4% and 10%) making use of inelastic neutron scattering. This system has been selected since the presence of heavy Ne atoms strongly influences the self-dynamics of the H_{2} centers of mass via the formation of short-lived cages, which act both on the vibrational and the diffusive parts of the single-particle motion. After operating a standard data reduction and the subtraction of the Ne signal, experimental neutron spectra were analyzed through a generalization of the Young and Koppel model, and the H_{2} center-of-mass self-dynamic structure factor was finally extracted for the two liquid samples. Important physical quantities (namely, single-particle mean kinetic energy and self-diffusion coefficient) were estimated from the experimental data and then compared with quantum dynamical calculations, which also provided simulations of the velocity autocorrelation functions for Ne atoms and H_{2} centers of mass. The latter estimates, in the framework of the well-known Gaussian approximation, were used to simulate the H_{2} center-of-mass self-dynamic structure factor in the same kinematic range and thermodynamic conditions of the neutron scattering one. The comparison between measured and calculated spectra turned out to be qualitatively good, but some discrepancies, especially in the low-frequency part, seem to reinforce the idea of the existence of relevant non-Gaussian effects as in the case of pure hydrogen and H_{2}-D_{2} mixtures.

摘要

我们利用非弹性中子散射技术测量了两种不同氢浓度水平(即 3.4%和 10%)的液态氖-氢混合物(T=30.1 K)的动态结构因子。选择这个体系是因为重氖原子的存在通过形成短寿命笼,强烈影响氢分子质心的自动力学,这些笼同时作用于单粒子运动的振动和扩散部分。在进行标准数据缩减并减去氖信号后,通过对 Young 和 Koppel 模型的推广,对实验中子能谱进行了分析,并最终为两种液体样品提取了氢分子质心自动态结构因子。从实验数据中估计了重要的物理量(即单粒子平均动能和自扩散系数),然后将其与量子动力学计算进行了比较,该计算还提供了氖原子和氢分子质心速度自相关函数的模拟。后者的估计值在著名的高斯近似框架内用于模拟在与中子散射相同的运动学范围和热力学条件下的氢分子质心自动态结构因子。测量和计算光谱之间的比较结果在定性上是良好的,但一些差异,特别是在低频部分,似乎加强了存在相关非高斯效应的想法,就像在纯氢和 H2-D2 混合物的情况下一样。

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