Basis Set Limit of CCSD(T) Energies: Explicit Correlation Versus Density-Based Basis-Set Correction

被引:9
|
作者
Mester, David [1 ,2 ,3 ]
Kallay, Mihaly [1 ,2 ,3 ]
机构
[1] Budapest Univ Technol & Econ, Fac Chem Technol & Biotechnol, Dept Phys Chem & Mat Sci, H-1111 Budapest, Hungary
[2] HUN REN BME Quantum Chem Res Grp, H-1111 Budapest, Hungary
[3] MTA BME Lendulet Quantum Chem Res Grp, H-1111 Budapest, Hungary
关键词
GENERALIZED-GRADIENT-APPROXIMATION; CONSISTENT BASIS-SETS; GAUSSIAN-BASIS SETS; AUXILIARY BASIS-SETS; MOLECULAR CALCULATIONS; WAVE-FUNCTIONS; CORRELATION CUSP; HARTREE-FOCK; EXCHANGE; ATOMS;
D O I
10.1021/acs.jctc.3c00979
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A thorough comparison is carried out for explicitly correlated and density-based basis-set correction approaches, which were primarily developed to mitigate the basis-set incompleteness error of wave function methods. An efficient implementation of the density-based scheme is also presented, utilizing the density-fitting approximation. The performance of these approaches is comprehensively tested for the second-order Moller-Plesset (MP2), coupled-cluster singles and doubles (CCSD), and CCSD with perturbative triples [CCSD-(T)] methods with respect to the corresponding complete basis set references. It is demonstrated that the density-based correction together with complementary auxiliary basis set (CABS)-corrected Hartree-Fock energies is highly robust and effectively reduces the error of the standard approaches; however, it does not outperform the corresponding explicitly correlated methods. Nevertheless, what still makes the density-corrected CCSD and CCSD-(T) methods competitive is that their computational costs are roughly half of those of the corresponding explicitly correlated variants. Additionally, an incremental approach for standard CCSD and CCSD-(T) is introduced. In this simple scheme, the total energies are corrected with the CABS correction and explicitly correlated MP2 contributions. As demonstrated, the resulting methods yield surprisingly good results, below 1 kcal/mol for thermochemical properties even with a double-zeta basis, while their computational expenses are practically identical to those of the density-based basis-set correction approaches.
引用
收藏
页码:8210 / 8222
页数:13
相关论文
共 50 条
  • [11] The CCSD(T) complete basis set limit for Ne revisited
    Barnes, Ericka C.
    Petersson, George A.
    Feller, David
    Peterson, Kirk A.
    JOURNAL OF CHEMICAL PHYSICS, 2008, 129 (19):
  • [12] Efficient Treatment of Correlation Energies at the Basis-Set Limit by Monte Carlo Summation of Continuum States
    Bircher, Martin P.
    Villard, Justin
    Rothlisberger, Ursula
    JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2020, 16 (10) : 6550 - 6559
  • [13] Basis-set extrapolation of the correlation energy
    Varandas, AJC
    JOURNAL OF CHEMICAL PHYSICS, 2000, 113 (20): : 8880 - 8887
  • [14] On the effectiveness of CCSD(T) complete basis set extrapolations for atomization energies
    Feller, David
    Peterson, Kirk A.
    Hill, J. Grant
    JOURNAL OF CHEMICAL PHYSICS, 2011, 135 (04):
  • [15] Self-consistent density-based basis-set correction: How much do we lower total energies and improve dipole moments?
    Giner, Emmanuel
    Traore, Diata
    Pradines, Barthelemy
    Toulouse, Julien
    JOURNAL OF CHEMICAL PHYSICS, 2021, 155 (04):
  • [16] Local density-functional polarizabilities and hyperpolarizabilities at the basis-set limit
    Dickson, RM
    Becke, AD
    JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (40): : 16105 - 16108
  • [17] Revisiting the Extrapolation of Correlation Energies to Complete Basis Set Limit
    Okoshi, Masaki
    Atsumi, Teruo
    Nakai, Hiromi
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2015, 36 (14) : 1075 - 1082
  • [18] Accurate energies of transition metal atoms, ions, and monoxides using selected configuration interaction and density-based basis-set corrections
    Yao, Yuan
    Giner, Emmanuel
    Anderson, Tyler A.
    Toulouse, Julien
    Umrigar, C. J.
    JOURNAL OF CHEMICAL PHYSICS, 2021, 155 (20):
  • [19] Achieving the CCSD(T) Basis-Set Limit in Sizable Molecular Clusters: Counterpoise Corrections for the Many-Body Expansion
    Richard, Ryan M.
    Lao, Ka Un
    Herbert, John M.
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2013, 4 (16): : 2674 - 2680
  • [20] CCSD(T) Complete Basis Set Limit Relative Energies for Low-Lying Water Hexamer Structures
    Bates, Desiree M.
    Tschumper, Gregory S.
    JOURNAL OF PHYSICAL CHEMISTRY A, 2009, 113 (15): : 3555 - 3559