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首页> 外文期刊>The Journal of Chemical Physics >Coupled-cluster theory for atoms and molecules in strong magnetic fields
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Coupled-cluster theory for atoms and molecules in strong magnetic fields

机译:强磁场中原子和分子的耦合簇理论

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摘要

An implementation of coupled-cluster (CC) theory to treat atoms and molecules in finite magnetic fields is presented. The main challenges for the implementation stem from the magnetic-field dependence in the Hamiltonian, or, more precisely, the appearance of the angular momentum operator, due to which the wave function becomes complex and which introduces a gauge-origin dependence. For this reason, an implementation of a complex CC code is required together with the use of gauge-including atomic orbitals to ensure gauge-origin independence. Results of coupled-cluster singles-doubles-perturbative-triples (CCSD(T)) calculations are presented for atoms and molecules with a focus on the dependence of correlation and binding energies on the magnetic field. (C) 2015 AIP Publishing LLC.
机译:提出了一种在有限磁场中处理原子和分子的耦合簇理论的实现。实现的主要挑战来自哈密顿量中的磁场依赖性,或更确切地说,源于角动量算子的出现,由于其波函数变得复杂并引入了量规原点依赖性。因此,需要使用复杂的CC代码以及使用包括轨距在内的原子轨道来确保轨距原点独立性。给出了原子和分子的耦合簇单双加扰动三重(CCSD(T))计算结果,重点是磁场的相关性和结合能的依赖性。 (C)2015 AIP Publishing LLC。

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