首页> 外文期刊>Journal of chemical theory and computation: JCTC >Performance and Scope of Perturbative Corrections to Random-Phase Approximation Energies
【24h】

Performance and Scope of Perturbative Corrections to Random-Phase Approximation Energies

机译:随机阶段近似能量扰动校正的性能和范围

获取原文
获取原文并翻译 | 示例
           

摘要

It has been suspected since the early days of the random-phase approximation (RPA) that corrections to RPA correlation energies result mostly from short-range correlation effects and are thus amenable to perturbation theory. Here we test this hypothesis by analyzing formal and numerical results for the most common beyond-RPA perturbative corrections, including the bare second-order exchange (SOX), second-order screened exchange (SOSEX), and approximate exchange kernel (AXK) methods. Our analysis is facilitated by efficient and robust algorithms based on the resolution-of-the-identity (RI) approximation and numerical frequency integration, which enable benchmark beyond-RPA calculations on medium-and large-size molecules with size-independent accuracy. The AXK method systematically improves upon RPA, SOX, and SOSEX for reaction barrier heights, reaction energies, and noncovalent interaction energies of main-group compounds. The improved accuracy of AXK compared with SOX and SOSEX is attributed to stronger screening of bare SOX in AXK. For reactions involving transition-metal compounds, particularly 3d transition-metal dimers, the AXK correction is too small and can even have the wrong sign. These observations are rationalized by a measure (alpha) over bar of the effective coupling strength for beyond-RPA correlation. When the effective coupling strength increases beyond a critical (alpha) over bar value of approximately 0.5, the RPA errors increase rapidly and perturbative corrections become unreliable. Thus, perturbation theory can systematically correct RPA but only for systems and properties qualitatively well captured by RPA, as indicated by small (alpha) over bar values.
机译:自从随机相位近似(RPA)的早期已经怀疑,该初期校正对RPA相关能量主要来自短距离相关效果,因此可以涉及扰动理论。在这里,我们通过分析最常见的超越RPA扰动校正的正式和数值结果,包括裸阶二阶交换(SOX),二阶屏幕交换(Sosex)和近似交换内核(AXK)方法来测试该假设。通过基于认定的分辨率(RI)近似和数值集成的高效和强大的算法,可以通过高尺寸和数值集成来促进我们的分析,这使得在媒体和大小分子上具有尺寸无关的精度的基准。 AXK方法系统地改善了RPA,SOX和Sosex的反应阻挡高度,反应能量和主要群体化合物的非共价相互作用能量。与SOX和Sosex相比,AXK的提高精度归因于AXK中裸袜的筛选。对于涉及过渡金属化合物的反应,特别是3D过渡金属二聚体,AXK校正太小,甚至可以具有错误的标志。这些观察结果通过用于超越RPA相关性的有效耦合强度的尺寸(alpha)来合理化。当有效耦合强度超过临界(alpha)的条形值大约0.5时,RPA误差迅速增加,扰动校正变得不可靠。因此,扰动理论可以系统地正确地校正RPA,而是仅针对RPA的系统和性质捕获的系统和性质,如小(alpha)上的条形值所示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号