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Simulations of Light-Induced Molecular Transformations in Multiple Dimensions with Incremental Sparse Surrogates

机译:增量稀疏替代物在多维上光诱导分子转化的模拟

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Simulations of light-induced molecular conformational transformations have traditionally been limited to a single degree of freedom because of the complexity of potential energy calculations. We propose a method of simulation that incrementally builds a surrogate for the potential energy function by computing gridpoints in parallel. We incorporate Smolyak's algorithm for sparse interpolation as the energy surrogates since it keeps the number of gridpoints at a manageable number. Our multi-dimensional algorithm is applied to the molecule 2-butene whose transition path is well known.
机译:传统上,由于势能计算的复杂性,光诱导分子构象转换的模拟仅限于单个自由度。我们提出了一种仿真方法,该方法通过并行计算网格点来逐步构建势能函数的替代项。由于能量替代,我们将Smolyak的算法用于稀疏插值,因为它使网格点的数量保持在可管理的数量。我们的多维算法适用于过渡路径众所周知的分子2-丁烯。

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