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Lattice QCD×Path Integral Monte Carlo×
VakgebiedKwantumcomputingKwantumcomputing
FamilieMachine learningMachine learning
Jaar van ontstaan19741948
GrondleggerKenneth WilsonRichard Feynman
TypeSimulation methodStochastic simulation
Oorspronkelijke bronWilson, K. G. (1974). Confinement of quarks. Physical Review D, 10, 2445–2459. DOI ↗Feynman, R. P. (1948). Space-time approach to non-relativistic quantum mechanics. Reviews of Modern Physics, 20, 367–387. DOI ↗
AliassenLQCD, lattice gauge theoryPIMC, Feynman path integral
Verwant33
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.Path Integral Monte Carlo (PIMC) is a computational method for calculating thermodynamic and structural properties of quantum systems using Feynman's path integral formulation. Developed rigorously by David Ceperley and colleagues in the 1990s, PIMC treats quantum particles as classical polymers in a higher-dimensional space, enabling efficient Monte Carlo sampling of quantum statistics.
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ScholarGateMethoden vergelijken: Lattice QCD · Path Integral Monte Carlo. Geraadpleegd op 2026-06-18 via https://scholargate.app/nl/compare