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Melting of ice under pressure

机译:冰在压力下融化

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The melting of ice under pressure is investigated with a series of first-principles molecular dynamics simulations. In particular, a two-phase approach is used to determine the melting temperature of the ice-VII phase in the range of 10-50 GPa. Our computed melting temperatures are consistent with existing diamond anvil cell experiments. We find that for pressures between 10 and 40 GPa, ice melts as a molecular solid. For pressures above 45 Gpa, there is a sharp increase in the slope of the melting curve because of the presence of molecular dissociation and proton diffusion in the solid before melting. The onset of significant proton diffusion in ice-VII as a function of increasing temperature is found to be gradual and bears many similarities to that of a type-ll superionic solid.
机译:用一系列第一性原理分子动力学模拟研究了在压力下冰的融化。特别地,使用两相方法来确定冰VII相的熔化温度在10-50GPa的范围内。我们计算的熔化温度与现有的金刚石砧室实验一致。我们发现,对于介于10和40 GPa之间的压力,冰会以分子固体形式融化。对于高于45 Gpa的压力,由于熔化前固体中存在分子解离和质子扩散,因此熔化曲线的斜率会急剧增加。发现随着温度的升高,冰VII中质子的大量扩散开始是渐进的,并且与II型超离子固体具有许多相似性。

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