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Roton excitations of the hydrogen molecule in the Ar(H-2)(2) compound - art. no. 144303

机译:Ar(H-2)(2)化合物中氢分子的Roton激发-艺术。没有。 144303

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In the Ar(H-2)(2) stoichiometric compound, stable only at high pressure, the S-0(0) rotational excitation shows a complicated fine structure when the ortho-H-2 concentration is sufficiently low in the sample. In this work experimental results for the rotational frequencies are reported up to 70 GPa. Moreover, we present here the details of the theoretical analysis, by which we calculate the number of active Raman rotational components, their symmetries, relative intensities, and shifts from the unperturbed rotational frequency, on the basis of the known models for the H-2-H-2 and H-2-Ar anisotropic interaction. The calculated frequencies are extremely sensitive to the shape of the anisotropic interaction potential components, and agree with the measured ones, up to 35 GPa, only if some adjustments are done on the literature models, especially for small intermolecular distances. All the newly determined anisotropic H-2-H-2 and H-2-Ar interaction potential components are reported and compared with literature values. [References: 22]
机译:在仅在高压下稳定的Ar(H-2)(2)化学计量化合物中,当样品中邻位H-2的浓度足够低时,S-0(0)旋转激发显示出复杂的精细结构。在这项工作中,旋转频率的实验结果据报道高达70 GPa。此外,在这里,我们介绍理论分析的详细信息,在此基础上,我们根据已知的H-2模型,计算出有效拉曼旋转分量的数量,其对称性,相对强度以及从不受干扰的旋转频率的偏移量-H-2和H-2-Ar各向异性相互作用。计算出的频率对各向异性相互作用势分量的形状极为敏感,并且与测得的频率一致,最高35 GPa,只有在文献模型上进行了一些调整,尤其是对于小分子间距离的情况下。报告了所有新确定的各向异性H-2-H-2和H-2-Ar相互作用势的组成部分,并与文献值进行了比较。 [参考:22]

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