Arbuznikov Alexei V, Wodyński Artur, Kaupp Martin
Institut für Chemie, Technische Universität Berlin, Theoretische Chemie, Sekr. C7, Straße des 17. Juni 135, D-10623 Berlin, Germany.
J Chem Phys. 2024 Oct 28;161(16). doi: 10.1063/5.0233312.
Modern functionals based on the exact-exchange (EXX) energy density like local hybrid functionals (LHs) or range-separated LHs have recently received additional attention due to their advantages over established functionals when it comes to the local balance between self-interaction errors and static-correlation errors. A possible theoretical drawback of such functionals over the years has been the so-called gauge problem due to the inherent ambiguity of exchange-energy densities. Modern LHs like LH20t or more sophisticated functionals based thereon have been constructed using suitably optimized calibration functions (CFs) to minimize the mismatch of the semi-local and EXX energy densities. Here, we show that the unphysical contributions arising from the gauge problem may also be reduced significantly without a CF by tailoring the position-dependence of the EXX admixture (local mixing function, LMF) in a way to suppress spurious positive energy-density contributions locally in space. This is achieved by building the so-called x-LMFs upon the ratio between EXX and semi-local exchange-energy densities. The resulting LH24x functional provides similar accuracy, e.g., for the GMTKN55 test suite, as LH20t, but without introduction of a CF! We provide detailed comparative analyses of integrated energies and spatially resolved energy densities. The good performances of LHs for chemically relevant energy differences are to some extent due to the core nature of unphysical artifacts that cancel out efficiently.
基于精确交换(EXX)能量密度的现代泛函,如局域杂化泛函(LH)或范围分离的LH,近年来受到了更多关注,因为在自相互作用误差和静态相关误差的局部平衡方面,它们比已有的泛函具有优势。多年来,这类泛函在理论上可能存在的一个缺点是所谓的规范问题,这是由于交换能量密度存在固有的模糊性。现代的LH,如LH20t或基于其的更复杂泛函,是通过使用适当优化的校准函数(CF)构建的,以最小化半局域和EXX能量密度的不匹配。在这里,我们表明,通过调整EXX混合(局域混合函数,LMF)的位置依赖性,以在空间局部抑制虚假的正能量密度贡献,也可以在不使用CF的情况下显著减少规范问题产生的非物理贡献。这是通过基于EXX和半局域交换能量密度的比值构建所谓的x-LMF来实现的。由此产生的LH24x泛函,例如对于GMTKN55测试集,提供了与LH20t相似的精度,但无需引入CF!我们提供了积分能量和空间分辨能量密度的详细比较分析。LH在化学相关能量差方面的良好性能在一定程度上归因于非物理伪影的核心性质,这些伪影能够有效地抵消。