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首页> 外文期刊>The Journal of Chemical Physics >Communication: Improved ab initio molecular dynamics by minimally biasing with experimental data
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Communication: Improved ab initio molecular dynamics by minimally biasing with experimental data

机译:通信:通过使用实验数据最小偏置来改进AB Initio分子动力学

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Accounting for electrons and nuclei simultaneously is a powerful capability of ab initio molecular dynamics (AIMD). However, AIMD is often unable to accurately reproduce properties of systems such as water due to inaccuracies in the underlying electronic density functionals. This shortcoming is often addressed by added empirical corrections and/or increasing the simulation temperature. We present here a maximum-entropy approach to directly incorporate limited experimental data via a minimal bias. Biased AIMD simulations of water and an excess proton in water are shown to give significantly improved properties both for observables which were biased to match experimental data and for unbiased observables. This approach also yields new physical insight into inaccuracies in the underlying density functional theory as utilized in the unbiased AIMD. Published by AIP Publishing.
机译:同时对电子和核的核算是AB Initio分子动力学(AIMD)的强大能力。 然而,目的往往无法准确地再现由于底层电子密度函数中的不准确性的水等系统的性质。 这种缺点通常是通过额外的经验校正和/或增加模拟温度来解决。 我们在此提供最大熵方法,可以通过最小的偏压直接整合有限的实验数据。 偏见的胃肠仿真水和过量质子在水中被示出为可观察到偏置以匹配实验数据和无偏见的可观察者的可观察到的性能显着改善。 这种方法还产生了在无偏见的AIMD中使用的潜在密度泛函理论中的不准确性的新身体洞察。 通过AIP发布发布。

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