水准点(测量)
计算机科学
带隙
混合功能
能量(信号处理)
密度泛函理论
统计物理学
系统误差
算法
标准差
错误检测和纠正
观测误差
半导体
差异(会计)
近似误差
误差线
计算物理学
相对标准差
还原(数学)
物理
钥匙(锁)
误差分析
作者
Kuiyu Ye,Jiale Shen,Haitao Liu,Yuanchang Li,Shengbai Zhang
标识
DOI:10.1021/acs.jctc.5c01373
摘要
First-principles calculations rely heavily on pseudopotentials, yet their impact on accuracy is hardly addressed. In this work, we show that most pseudopotentials to date introduce errors, which manifest themselves as errors of atomic energy levels, leading to a defacto deviation from the Hohenberg-Kohn theorem. We consider the atomic-level adjusted pseudopotentials, whose interplay with exchange-correlation functional provides a pragmatic correction that balances accuracy and efficiency. We benchmark our theory with bandgap calculation for 54 semiconductors containing monovalent Cu. The results, compared to those from conventional studies, not only remove all erroneous metal predictions for 11 compounds, but also reduce the mean relative error from 80% to 20%. Overall accuracy even exceeds those of standard hybrid functionals and GW methods.
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