Study of high-performance canonical molecular orbitals calculation for proteins
2017
The canonical molecular orbital (CMO) calculation can help to understand chemical properties and reactions in proteins. However, it is difficult to perform the CMO calculation of proteins because of its self-consistent field (SCF) convergence problem and expensive computational cost. To certainly obtain the CMO of proteins, we work in research and development of high-performance CMO applications and perform experimental studies. We have proposed the third-generation density-functional calculation method of calculating the SCF, which is more advanced than the FILE and direct method. Our method is based on Cholesky decomposition for two-electron integrals calculation and the modified grid-free method for the pure-XC term evaluation. By using the third-generation density-functional calculation method, the Coulomb, the Fock-exchange, and the pure-XC terms can be given by simple linear algebraic procedure in the SCF loop. Therefore, we can expect to get a good parallel performance in solving the SCF problem by...
Keywords:
- Natural bond orbital
- Linear combination of atomic orbitals
- Slater-type orbital
- Basis set
- Molecular orbital
- Valence bond theory
- Molecular orbital theory
- Physics
- Quantum mechanics
- Localized molecular orbitals
- Applied mathematics
- Linear algebra
- Computation
- Direct method
- Computer science
- Convergence (routing)
- Cholesky decomposition
- Convergence problem
- Correction
- Source
- Cite
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