航程(航空)
范德瓦尔斯力
静电学
统计物理学
计算机科学
分子动力学
多极展开
代表(政治)
生物分子
瓶颈
周期边界条件
物理
纳米技术
边值问题
材料科学
分子
量子力学
政治
政治学
法学
复合材料
嵌入式系统
作者
Celeste Sagui,Thomas A. Darden
出处
期刊:Annual Review of Biophysics and Biomolecular Structure
[Annual Reviews]
日期:1999-06-01
卷期号:28 (1): 155-179
被引量:604
标识
DOI:10.1146/annurev.biophys.28.1.155
摘要
▪ Abstract Current computer simulations of biomolecules typically make use of classical molecular dynamics methods, as a very large number (tens to hundreds of thousands) of atoms are involved over timescales of many nanoseconds. The methodology for treating short-range bonded and van der Waals interactions has matured. However, long-range electrostatic interactions still represent a bottleneck in simulations. In this article, we introduce the basic issues for an accurate representation of the relevant electrostatic interactions. In spite of the huge computational time demanded by most biomolecular systems, it is no longer necessary to resort to uncontrolled approximations such as the use of cutoffs. In particular, we discuss the Ewald summation methods, the fast particle mesh methods, and the fast multipole methods. We also review recent efforts to understand the role of boundary conditions in systems with long-range interactions, and conclude with a short perspective on future trends.
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