物理
不稳定性
格子(音乐)
晶体结构
声子
立方晶系
等球密排
结构稳定性
晶格常数
工作(物理)
凝聚态物理
金属
热力学
空格近似
材料科学
结晶学
一维晶格中的粒子
衍射
机械
化学
量子力学
互易晶格
结构工程
工程类
冶金
声学
作者
Göran Grimvall,Blanka Magyari-Köpe,Vidvuds Ozoliņš,Kristin A. Persson
标识
DOI:10.1103/revmodphys.84.945
摘要
Most metallic elements have a crystal structure that is either body-centered cubic (bcc), face-centered close packed, or hexagonal close packed. If the bcc lattice is the thermodynamically most stable structure, the close-packed structures usually are dynamically unstable, i.e., have elastic constants violating the Born stability conditions or, more generally, have phonons with imaginary frequencies. Conversely, the bcc lattice tends to be dynamically unstable if the equilibrium structure is close packed. This striking regularity essentially went unnoticed until ab initio total-energy calculations in the 1990s became accurate enough to model dynamical properties of solids in hypothetical lattice structures. After a review of stability criteria, thermodynamic functions in the vicinity of an instability, Bain paths, and how instabilities may arise or disappear when pressure, temperature, and/or chemical composition is varied are discussed. The role of dynamical instabilities in the ideal strength of solids and in metallurgical phase diagrams is then considered, and comments are made on amorphization, melting, and low-dimensional systems. The review concludes with extensive references to theoretical work on the stability properties of metallic elements.
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