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Many-body interactions and high-pressure equations of state in rare-gas solids

机译:稀有气体固体中的多体相互作用和高压状态方程

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The T=0 K equations of state (EOS) of rare-gas solids (RGS) (He, Ne, Ar, Kr, and Xe) are calculated in the experimentally studied ranges of pressures with the two- and three-body interatomic forces taken into account. Solid-state corrections to the pure two-body Aziz et. al. potentials included the long-range Axilrod-Teller three-body interaction and short-range three-body exchange interaction. The energy-scale and length-scale parameters of the latter were taken as adjustable parameters of theory. The calculated T=0 K EOS for all RGS are in excellent agreement with experiment in the whole range of pressures. The calculated EOS for Ar, Kr, and Xe exhibit inflection points where the isothermal bulk moduli have non-physical maxima, indicating that account of only three-body forces becomes insufficient. These points lie at pressures 250, 200, and 175 GPa (volume compressions of approximately 4.8, 4.1, and 3.6) for Ar, Kr, and Xe, respectively. No such points were found in the calculated EOS of He and Ne. The relative magnitude of the three-body contribution to the ground-state energy with respect to the two-body one as a function of the volume compression was found to be nonmonotonic in the sequence Ne-Ar-Kr-Xe. In a large range of compressions, Kr has the highest value of this ratio. This anomalously high three-body exchange force contributes to the EOS a negative pressure so large that the EOS for Kr and Ar as a function of compression nearly coincide. At compressions higher than approximately 3.5 the curves intersect, and further on, the EOS of Kr lies lower than that of Ar.
机译:在实验研究的压力范围内,利用二体和三体间原子力,计算了稀有气体固体(RGS)(He,Ne,Ar,Kr和Xe)的T = 0 K状态方程(EOS)考虑在内。对纯二体Aziz等的固态校正。等潜力包括远程Axilrod-Teller三体相互作用和短程三体交换相互作用。后者的能量尺度和长度尺度参数作为理论上的可调整参数。在所有压力范围内,所有RGS的T = 0 K EOS计算值均与实验非常吻合。计算得出的Ar,Kr和Xe的EOS会出现拐点,在这些拐点处,等温体积模量具有非物理最大值,这表明仅考虑三体力变得不足。这些点分别位于Ar,Kr和Xe的压力250、200和175 GPa(体积压缩率分别为4.8、4.1和3.6)附近。在计算得出的He和Ne的EOS中没有发现这些点。发现三体对基态能量的贡献相对于二体能量的相对大小是体积压缩的函数,在Ne-Ar-Kr-Xe序列中是非单调的。在较大的压缩范围内,Kr具有该比率的最大值。这种异常高的三体交换力给EOS带来了很大的负压,以至于Kr和Ar的EOS随压缩作用几乎重合。在高于约3.5的压缩率下,曲线相交,并且进一步,Kr的EOS低于Ar。

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