Force fields and molecular dynamics simulations

被引:155
作者
Gonzalez, M. A. [1 ]
机构
[1] Inst Laue Langevin, 6 Rue Jules Horowitz, F-38042 Grenoble 9, France
来源
NEUTRONS ET SIMULATIONS, JDN 18 | 2010年
关键词
PARTICLE-MESH EWALD; POTENTIAL-ENERGY FUNCTIONS; EQUATION-OF-STATE; MONTE-CARLO; BIOMOLECULAR SIMULATION; COMPUTER-SIMULATIONS; LIQUID WATER; CONFORMATIONAL-ANALYSIS; DIELECTRIC-PROPERTIES; CANONICAL ENSEMBLE;
D O I
10.1051/sfn/201112009
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
The objective of this review is to serve as an introductory guide for the non-expert to the exciting field of Molecular Dynamics (MD). MD simulations generate a phase space trajectory by integrating the classical equations of motion for a system of N particles. Here I review the basic concepts needed to understand the technique, what are the key elements to perform a simulation and which is the information that can be extracted from it. I will start defining what is a force field, which are the terms composing a classical force field, how the parameters of the potential are optimized, and which are the more popular force fields currently employed and the lines of research to improve them. Then the Molecular Dynamics technique will be introduced, including a general overview of the main algorithms employed to integrate the equations of motion, compute the long-range forces, work on different thermodynamic ensembles, or reduce the computational time. Finally the main properties that can be computed from a MD trajectory are briefly introduced.
引用
收藏
页码:169 / 200
页数:32
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