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Renormaliseringsgruppekvationer×Vegas Monte Carlo×
ÄmnesområdePartikelfysikPartikelfysik
FamiljProcess / pipelineProcess / pipeline
Ursprungsår19701978
UpphovspersonCurtis Callan and David GrossPeter Lepage
TypScale dependence frameworkAdaptive sampling algorithm
UrsprungskällaCallan, C. G. (1970). Broken scale invariance in scalar field theory. Physical Review D, 2(6), 1541. DOI ↗Lepage, G. P. (1978). A new algorithm for adaptive multidimensional integration. Journal of Computational Physics, 27(2), 192–203. DOI ↗
AliasRGE, running couplings, beta function evolutionVEGAS algorithm, adaptive importance sampling, multidimensional integration
Närliggande33
SammanfattningRenormalization Group Equations (RGEs) describe how the coupling constants and masses of a quantum field theory evolve with energy scale. They are fundamental tools for understanding the scale dependence of physics, predicting the behavior of coupling strengths at different energies, and connecting high-energy physics to low-energy precision measurements.VEGAS is an adaptive Monte Carlo algorithm for numerical integration of multidimensional functions, particularly useful for high-dimensional integrals common in particle physics calculations. By adaptively refining the sampling distribution to concentrate points in high-contribution regions, VEGAS dramatically improves integration efficiency compared to naive Monte Carlo.
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  3. PUBLISHED

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ScholarGateJämför metoder: Renormalization Group Equations · Vegas Monte Carlo. Hämtad 2026-06-19 från https://scholargate.app/sv/compare