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Lattice QCD×Dichtheidsfunctionaaltheorie×
VakgebiedKwantumcomputingKwantumcomputing
FamilieMachine learningMachine learning
Jaar van ontstaan19741965
GrondleggerKenneth WilsonWalter Kohn
TypeSimulation methodElectronic structure method
Oorspronkelijke bronWilson, K. G. (1974). Confinement of quarks. Physical Review D, 10, 2445–2459. DOI ↗Kohn, W., Sham, L. J. (1965). Self-consistent equations including exchange and correlation effects. Physical Review, 140, A1133–A1138. DOI ↗
AliassenLQCD, lattice gauge theoryDFT, Kohn-Sham equations
Verwant34
SamenvattingLattice Quantum Chromodynamics (LQCD) is a computational method for studying quantum chromodynamics (QCD)—the theory of strong nuclear forces—by discretizing spacetime onto a lattice and simulating quark and gluon dynamics. Introduced by Kenneth Wilson in 1974, LQCD is the only known approach for non-perturbative calculations of QCD properties from first principles.Density Functional Theory (DFT) is a computational method for determining the properties of materials and molecules by modeling the ground state electron density. Developed by Walter Kohn and Lu Jeu Sham in the 1960s, DFT reduces the complexity of quantum chemistry from tracking individual electron coordinates to optimizing the total electron density, enabling efficient simulations of large molecular and condensed-matter systems.
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ScholarGateMethoden vergelijken: Lattice QCD · Density Functional Theory. Geraadpleegd op 2026-06-18 via https://scholargate.app/nl/compare