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THEORY OF MINERALS AT HIGH AND ULTRAHIGH PRESSURES: STRUCTURE, PROPERTIES, 'DYNAMICS, AND PHASE TRANSITIONS

机译:高和超高压的矿物理论:结构,属性,动态和相转移

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The interest in minerals at extreme conditions is natural: most of the Earth's interior exists at high pressures (up to 364 GPa) and temperatures (up to ~6000 K). Studying the behaviour, properties, and structure of Earth-forming materials at such conditions allows one to understand better the properties of the Earth's interior and provides clues to important geological problems. Experimental studies are often problematic at such conditions, and theory often provides the only possible route for such studies. Unlike experiment, theory meets no major challenge at extreme conditions, and a single calculation or a series of calculations can provide a wealth of information on many properties of the material. It is fortunate that state-of-the-art quantum-mechanical calculations can provide sufficient accuracy for solving many geologically important problems.
机译:极端条件下矿物质的兴趣是自然的:大部分地球内部都存在于高压(高达364 GPa)和温度(高达〜6000 k)。在这种条件下研究地球形成材料的行为,性质和结构允许人们更好地理解地球内部的性质,并提供重要地质问题的线索。在这种情况下,实验研究往往是有问题的,并且理论通常提供此类研究的唯一可能的路线。与实验不同,理论在极端条件下没有重大挑战,单一计算或一系列计算可以提供有关材料的许多性质的丰富信息。幸运的是,最先进的量子机械计算可以提供足够的准确性,以解决许多地质学上重要问题。

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