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首页> 外文期刊>International Journal of Quantum Chemistry >Adaptively Biased Molecular Dynamics: An Umbrella Sampling Method With a Time-Dependent Potential
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Adaptively Biased Molecular Dynamics: An Umbrella Sampling Method With a Time-Dependent Potential

机译:自适应偏置的分子动力学:具有时间相关电位的伞采样方法

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We discuss an adaptively biased molecular dynamics (ABMD) method for the computation of a free energy surface for a set of reaction coordinates. The ABMD method belongs to the general category of umbrella sampling methods with an evolving biasing potential. It is characterized by a small number of control parameters and an O(t) numerical cost with simulation time t. The method naturally allows for extensions based on multiple walkers and replica exchange mechanism. The workings of the method are illustrated with a number of examples, including sugar puckering, and free energy landscapes for polymethionine and polyproline peptides, and for a short P-turn peptide. ABMD has been implemented into the latest version (Case et al., AMBER 10; University of California: San Francisco, 2008) of the AMBER software package and is freely available to the simulation community.
机译:我们讨论了用于计算一组反应坐标的自由能表面的自适应偏置分子动力学(ABMD)方法。 ABMD方法属于具有潜在偏见的伞状采样方法的一般类别。它的特点是控制参数少,仿真时间为t的O(t)数值成本。该方法自然允许基于多个walker和副本交换机制的扩展。通过许多示例说明了该方法的工作原理,包括糖褶皱,聚蛋氨酸和聚脯氨酸肽以及短P转肽的自由能态。 ABMD已被实施为AMBER软件包的最新版本(Case等,AMBER 10;加利福尼亚大学:旧金山,2008),并且可以免费提供给模拟社区。

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