首页> 外文期刊>Journal of chemical theory and computation: JCTC >Superposition of Fragment Excitations for Excited States of Large Clusters with Application to Helium Clusters
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Superposition of Fragment Excitations for Excited States of Large Clusters with Application to Helium Clusters

机译:大型团簇激发态碎片激发的叠加及其在氦团簇中的应用

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摘要

We develop a local excited-state method, based on the configuration interaction singles (CIS) wave function, for large atomic and molecular clusters. This method exploits the properties of absolutely localized molecular orbitals (ALMOs), which strictly limits the total number of excitations, and results in formal scaling with the third power of the system size for computing the full spectrum of ALMO-CIS excited states. The derivation of the equations and design of the algorithm are discussed in detail, with particular emphasis on the computational scaling. Clusters containing similar to 500 atoms were used in evaluating the scaling, which agrees with the theoretical predictions, and the accuracy of the method is evaluated with respect to standard CIS. A pioneering application to the size dependence of the helium cluster spectrum is also presented for clusters of 25-231 atoms, the largest of which results in the computation of 2310 excited states per sampled cluster geometry.
机译:我们基于配置相互作用单(CIS)波函数,针对大型原子和分子簇,开发了一种局部激发态方法。这种方法利用了绝对局限性分子轨道(ALMO)的性质,该性质严格限制了激发的总数,并导致了系统尺寸的三次方的正式定标,以计算ALMO-CIS激发态的全谱。详细讨论了方程的推导和算法的设计,尤其着重于计算比例。使用包含约500个原子的团簇评估缩放比例,这与理论预测相符,并且相对于标准CIS评估了该方法的准确性。还提出了氦原子团簇谱的大小依赖性的先驱应用,用于25-231个原子团,其中最大的原子团可以计算出每个采样团簇几何结构2310个激发态。

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