首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >An Efficient Deformation-Based Global Optimization Method (Self-Consistent Basin-to-Deformed-Basin Mapping (SCBDBM). Application to Lennard-Jones Atomic Clusters
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An Efficient Deformation-Based Global Optimization Method (Self-Consistent Basin-to-Deformed-Basin Mapping (SCBDBM). Application to Lennard-Jones Atomic Clusters

机译:一种基于变形的高效全局优化方法(自洽盆地到变形盆地映射(SCBDBM)。在Lennard-Jones原子团簇中的应用

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摘要

A recently proposed method to surmount the multiple-minima problem in protein folding is applied here to global optimization of Lennard-Jones atomic clusters. The method, self-consistent basin-to-deformed-basin mapping (SCBDBM), locates a group of large basins containing low-energy minima (hereafter referred to as superbasins) in the original energy surface by coupling the superbasins in the original surface to basins in a highly deformed energy surface (which contains a significantly reduced number of minima, compared to the original rugged energy surface). Various kinds of deformation based on the distance scaling method (DSM) have been tested. The method was able to locate all the lowest-energy structures of Lennard-Jones atomic clusters with a size of up to 100 atoms, except for clusters of 75-77 atoms. In these cases, the method found the previously known second-to-the-lowest energy structures.
机译:最近提出的克服蛋白质折叠中的多个极小问题的方法在此应用于Lennard-Jones原子簇的全局优化。该方法是自洽盆地到变形盆地映射(SCBDBM),通过将原始表面的超盆地耦合到原始能量表面,从而在原始能量表面中定位一组包含低能量极小值的大型盆地(以下称为超级盆地)。盆地位于高度变形的能量表面(与原始崎energy的能量表面相比,其最小值明显减少)。已经测试了基于距离缩放方法(DSM)的各种变形。该方法能够定位Lennard-Jones原子簇的所有最低能级结构,最大尺寸为100个原子,除了75-77个原子的簇。在这些情况下,该方法找到了先前已知的第二至最低能量结构。

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