High-performance strategies for the recent MRSF-TDDFT in GAMESS

  • Komarov, Konstantin; 
  • Mironov, Vladimir; 
  • Lee, Seunghoon; 
  • Pham, Buu Q.; 
  • Gordon, Mark S.; 
  • ... Choi, Cheol Ho
Citations

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6
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SCOPUS

5

초록

Multiple ERI (Electron Repulsion Integral) tensor contractions (METC) with several matrices are ubiquitous in quantum chemistry. In response theories, the contraction operation, rather than ERI computations, can be the major bottleneck, as its computational demands are proportional to the multiplicatively combined contributions of the number of excited states and the kernel pre-factors. This paper presents several high-performance strategies for METC. Optimal approaches involve either the data layout reformations of interim density and Fock matrices, the introduction of intermediate ERI quartet buffer, and loop-reordering optimization for a higher cache hit rate. The combined strategies remarkably improve the performance of the MRSF (mixed reference spin flip)-TDDFT (time-dependent density functional theory) by nearly 300%. The results of this study are not limited to the MRSF-TDDFT method and can be applied to other METC scenarios.

키워드

DENSITY-FUNCTIONAL THEORY; POTENTIAL-ENERGY SURFACES; SPIN-FLIP APPROACH; DOUBLE EXCITATIONS; EXCITED-STATES; CONICAL INTERSECTIONS; IMPACT
제목
High-performance strategies for the recent MRSF-TDDFT in GAMESS
저자
Komarov, Konstantin; Mironov, Vladimir; Lee, Seunghoon; Pham, Buu Q.; Gordon, Mark S.; Choi, Cheol Ho
DOI
10.1063/5.0148005
발행일
2023-05-21
유형
Article
저널명
The Journal of Chemical Physics
권
158
호
19