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首页> 外文期刊>Reports on Progress in Physics >Metadynamics: a method to simulate rare events and reconstruct the free energy in biophysics, chemistry and material science - art. no. 126601
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Metadynamics: a method to simulate rare events and reconstruct the free energy in biophysics, chemistry and material science - art. no. 126601

机译:元动力学:一种模拟稀有事件并重建生物物理学,化学和材料科学-艺术中的自由能的方法。没有。 126601

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摘要

Metadynamics is a powerful algorithm that can be used both for reconstructing the free energy and for accelerating rare events in systems described by complex Hamiltonians, at the classical or at the quantum level. In the algorithm the normal evolution of the system is biased by a history-dependent potential constructed as a sum of Gaussians centered along the trajectory followed by a suitably chosen set of collective variables. The sum of Gaussians is exploited for reconstructing iteratively an estimator of the free energy and forcing the system to escape from local minima. This review is intended to provide a comprehensive description of the algorithm, with a focus on the practical aspects that need to be addressed when one attempts to apply metadynamics to a new system: (i) the choice of the appropriate set of collective variables; (ii) the optimal choice of the metadynamics parameters and (iii) how to control the error and ensure convergence of the algorithm.
机译:元动力学是一种功能强大的算法,既可以用于重构自由能,也可以用于加速复杂哈密顿量描述的系统中的经典事件或量子级别的稀有事件。在该算法中,系统的正常演化受到与历史相关的电势的偏见,该电势被构造为以高斯为中心的总和,沿着轨迹移动,然后选择合适的一组集合变量。利用高斯的总和来迭代地重建自由能的估计量,并迫使系统脱离局部极小值。这篇综述旨在提供对算法的全面描述,重点是当人们试图将元动力学应用于新系统时需要解决的实际方面:(i)选择适当的集合变量集; (ii)元动力学参数的最佳选择,以及(iii)如何控制误差并确保算法的收敛性。

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