物理
电场
极化(电化学)
电场位移场
铁电性
形式主义(音乐)
理论物理学
边值问题
经典力学
统计物理学
量子力学
艺术
物理化学
视觉艺术
电介质
化学
音乐剧
作者
Massimiliano Stengel,Nicola A. Spaldin,David Vanderbilt
出处
期刊:Nature Physics
[Nature Portfolio]
日期:2009-02-01
卷期号:5 (4): 304-308
被引量:188
摘要
Finite-field calculations in periodic insulators are technically and conceptually challenging, due to fundamental problems in defining polarization in extended solids. While significant progress has been made recently with the establishment of techniques to fix the electric field E or the macroscopic polarization P in first-principles calculations, both methods lack the ease of use and conceptual clarity of standard zero-field calculations. Here we develop a new formalism in which the electric displacement D, rather than E or P, is the fundamental electrical variable. Fixing D has the intuitive interpretation of imposing open-circuit electrical boundary conditions, which is particularly useful in studying ferroelectric systems. Furthermore, the analogy to open-circuit capacitors suggests an appealing reformulation in terms of free charges and potentials, which dramatically simplifies the treatment of stresses and strains. Using PbTiO3 as an example, we show that our technique allows full control over the electrical variables within the density functional formalism.
科研通智能强力驱动
Strongly Powered by AbleSci AI