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Crystal structure prediction using ab initio evolutionary techniques: Principles and applications

机译:从头算进化技术进行晶体结构预测:原理与应用

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摘要

We have developed an efficient and reliable methodology for crystal structure prediction, merging ab initio total-energy calculations and a specifically devised evolutionary algorithm. This method allows one to predict the most stable crystal structure and a number of low-energy metastable structures for a given compound at any P-T conditions without requiring any experimental input. Extremely high (nearly 100%) success rate has been observed in a few tens of tests done so far, including ionic, covalent, metallic, and molecular structures with up to 40 atoms in the unit cell. We have been able to resolve some important problems in high-pressure crystallography and report a number of new high-pressure crystal structures (stable phases: epsilon-oxygen, new phase of sulphur, new metastable phases of carbon, sulphur and nitrogen, stable and metastable phases of CaCO3). Physical reasons for the success of this methodology are discussed. (c) 2006 American Institute of Physics.
机译:我们已经开发了一种有效且可靠的晶体结构预测方法,融合了从头算起的总能量计算和专门设计的进化算法。这种方法可以在任何P-T条件下预测给定化合物的最稳定的晶体结构和许多低能的亚稳态结构,而无需任何实验输入。迄今为止,在数十项测试中已经观察到极高的成功率(接近100%),包括在晶胞中具有多达40个原子的离子,共价,金属和分子结构。我们已经能够解决高压晶体学中的一些重要问题,并报告了许多新的高压晶体结构(稳定相:ε-氧,硫的新相,碳,硫和氮的新亚稳相,稳定的CaCO3的亚稳相)。讨论了此方法成功的物理原因。 (c)2006年美国物理研究所。

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