最大值和最小值
密度泛函理论
晶体结构预测
基态
统计物理学
晶体结构
电子结构
轨道自由密度泛函理论
能量泛函
能量(信号处理)
能源景观
随机搜索
物理
计算机科学
局部密度近似
量子力学
化学
数学
算法
结晶学
热力学
数学分析
作者
William C. Witt,Benjamin W. B. Shires,Chuin Wei Tan,Wojciech J. Jankowski,Chris J. Pickard
标识
DOI:10.1021/acs.jpca.0c11030
摘要
The properties of a material depend on how its atoms are arranged, and predicting these arrangements from first principles is a longstanding challenge. Orbital-free density functional theory provides a quantum-mechanical model based solely on the electron density, not individual wave functions. The resulting speedups make it attractive for random structure searching, whereby random configurations of atoms are relaxed to local minima in the energy landscape. We use this strategy to map the low-energy crystal structures of Li, Na, Mg, and Al at zero pressure. For Li and Na, our searching finds numerous close-packed polytypes of almost-equal energy, consistent with previous efforts to understand their low-temperature forms. For Mg and Al, the searching identifies the expected ground state structures unambiguously, in addition to revealing other low-energy structures. This new role for orbital-free density functional theory—particularly as continued advances make it accurate for more of the periodic table—will expedite crystal structure prediction over wide ranges of compositions and pressures.
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