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寻求通用密度泛函:化学和物理领域广泛数据库中密度泛函的准确性。

Quest for a universal density functional: the accuracy of density functionals across a broad spectrum of databases in chemistry and physics.

机构信息

Department of Chemistry, Chemical Theory Center, and Supercomputing Institute, University of Minnesota, , Minneapolis, MN 55455-0431, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2014 Feb 10;372(2011):20120476. doi: 10.1098/rsta.2012.0476. Print 2014 Mar 13.

Abstract

Kohn-Sham density functional theory is in principle an exact formulation of quantum mechanical electronic structure theory, but in practice we have to rely on approximate exchange-correlation (xc) functionals. The objective of our work has been to design an xc functional with broad accuracy across as wide an expanse of chemistry and physics as possible, leading--as a long-range goal--to a functional with good accuracy for all problems, i.e. a universal functional. To guide our path towards that goal and to measure our progress, we have developed-building on earlier work of our group-a set of databases of reference data for a variety of energetic and structural properties in chemistry and physics. These databases include energies of molecular processes, such as atomization, complexation, proton addition and ionization; they also include molecular geometries and solid-state lattice constants, chemical reaction barrier heights, and cohesive energies and band gaps of solids. For this paper, we gather many of these databases into four comprehensive databases, two with 384 energetic data for chemistry and solid-state physics and another two with 68 structural data for chemistry and solid-state physics, and we test two wave function methods and 77 density functionals (12 Minnesota meta functionals and 65 others) in a consistent way across this same broad set of data. We especially highlight the Minnesota density functionals, but the results have broader implications in that one may see the successes and failures of many kinds of density functionals when they are all applied to the same data. Therefore, the results provide a status report on the quest for a universal functional.

摘要

Kohn-Sham 密度泛函理论在原则上是量子力学电子结构理论的精确表述,但实际上我们必须依赖于近似的交换关联(xc)泛函。我们工作的目标是设计一个在尽可能广泛的化学和物理范围内具有广泛准确性的 xc 泛函,从而作为一个长期目标,得到一个对所有问题都具有良好准确性的泛函,即通用泛函。为了指导我们实现这一目标并衡量我们的进展,我们在我们小组的早期工作基础上,开发了一套用于化学和物理中各种能量和结构性质的参考数据数据库。这些数据库包括分子过程的能量,如原子化、络合、质子加成和电离;它们还包括分子几何形状和固态晶格常数、化学反应势垒高度以及固体的内聚能和能带隙。在本文中,我们将许多这些数据库汇集到四个综合数据库中,其中两个数据库包含 384 个化学和固态物理的能量数据,另外两个数据库包含 68 个化学和固态物理的结构数据,我们以一致的方式在相同的广泛数据集上测试了两种波函数方法和 77 个密度泛函(12 个明尼苏达泛函和 65 个其他泛函)。我们特别强调明尼苏达密度泛函,但这些结果具有更广泛的意义,因为当所有密度泛函都应用于相同的数据时,人们可以看到许多种密度泛函的成功和失败。因此,这些结果提供了对通用泛函的追求的现状报告。

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