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Compression-rate dependence of the phase transition from hexagonal ice to ice II and/or ice III

机译:从六角形冰到冰II和/或冰III的相变的压缩率依赖性

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We study the density-driven phase transition from hexagonal ice in the temperature range of 170-230 K up to pressures of 0.65 GPa using a piston-cylinder apparatus. Pure ice II, pure ice III, or mixtures of ice II and ice III are identified as products when the compression-rate is varied from 0.001-4 GPa/min. At low compression-rates and at high temperatures, formation of ice II is observed, which is in accordance with the phase diagram. However, at low temperatures and at higher compression rates, formation of metastable ice III is observed, which extends the known temperature range for possible formation of ice III. Metastable ice III rather than stable ice II crystals are produced by simple variation of the compression rate, which is an uncommon concept of producing metastable phases. We discuss some implications for our understanding of the interior of icy satellites such as Ganymede.
机译:我们使用活塞缸装置研究了从密度为170-230 K的六方冰到压力为0.65 GPa的密度驱动的相变。当压缩率在0.001-4 GPa / min范围内变化时,纯冰II,纯冰III或冰II和冰III的混合物被确定为产品。在低压缩率和高温下,观察到冰II的形成,这与相图一致。然而,在低温和较高压缩率下,观察到亚稳冰III的形成,这扩大了已知的温度范围,可能形成冰III。通过简单地改变压缩速率就可以产生亚稳态冰III而不是稳定的冰II晶体,这是产生亚稳态相的不常见概念。我们讨论了一些对理解加尼梅德等冰冷卫星内部的影响。

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