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PolaBer: a program to calculate and visualize distributed atomic polarizabilities based on electron density partitioning

机译:PolaBer:一种基于电子密度分区计算和可视化分布式原子极化率的程序

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This paper describes the program PolaBer, which calculates atomic polarizability tensors from electric field perturbations of a partitioned electron density distribution. Among many possible partitioning schemes, PolaBer is currently using the quantum theory of atoms in molecules and it is interfaced to programs that apply such a partitioning. The calculation of the atomic tensors follows the idea suggested by Keith [The Quantum Theory of Atoms in Molecules: From Solid State to DNA and Drug Design, (2007), edited by C. F. Matta & R. J. Boyd. Weinheim: Wiley-VCH], which enables the removal of the intrinsic origin dependence of the atomic charge contributions to the molecular dipole moment. This scheme allows the export, within chemically equivalent functional groups, of properties calculated from atomic dipoles, such as for example the atomic polarizabilities. The software permits visualization of the tensors and calculation of straightforward optical properties of a molecule (like the molar refractive index) or a crystal (assuming the molecule in a given crystal lattice).
机译:本文介绍了程序PolaBer,该程序从分配的电子密度分布的电场扰动中计算原子极化率张量。在许多可能的分配方案中,PolaBer当前正在使用分子中原子的量子理论,并且已与应用这种分配的程序接口。原子张量的计算遵循Keith提出的思想[分子中的原子量子理论:从固态到DNA和药物设计,(2007),由C. F. Matta&R. J. Boyd编辑。 [Weinheim:Wiley-VCH],它可以消除原子电荷对分子偶极矩的内在因果关系。该方案允许在化学等效的官能团内输出由原子偶极子计算出的性质,例如原子极化率。该软件允许张量的可视化和分子(如摩尔折射率)或晶体(假定分子在给定晶格中)的直接光学性质的计算。

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