ScholarGate
Asistent

Uporedite metode

Pregledajte izabrane metode jednu pored druge; redovi koji se razlikuju su istaknuti.

Simulacija snopa metodom čestica u ćeliji×Geant4 симулација×
OblastFizika česticaFizika čestica
PorodicaProcess / pipelineProcess / pipeline
Godina nastanka19912003
TvoracBirdsall, Langdon, and collaboratorsS. Agostinelli and Geant4 Collaboration
TipMonte Carlo beam simulationDetector simulation framework
Temeljni izvorBirdsall, C. K., & Langdon, A. B. (1991). Plasma Physics via Computer Simulation. Taylor & Francis. link ↗Agostinelli, S., et al. (2003). Geant4 - a simulation toolkit. Nuclear Instruments and Methods in Physics Research Section A, 506(3), 250–303. DOI ↗
Drugi naziviPIC simulation, plasma simulation, beam dynamicsGeant4, Geometry and Tracking 4
Srodne33
SažetakThe Particle-in-Cell (PIC) method is a powerful computational technique for simulating the dynamics of charged particle beams and plasmas in complex electromagnetic field configurations. By tracking individual macroparticles and self-consistently solving Maxwell's equations on a grid, PIC enables study of collective effects and nonlinear phenomena in beam and accelerator physics.Geant4 is a Monte Carlo simulation toolkit for the passage of particles through matter, developed by an international collaboration. It provides a comprehensive framework for modeling detector geometries, simulating particle interactions, and predicting detector responses, making it essential for designing and optimizing particle physics experiments.
ScholarGateSkup podataka
  1. v1
  2. 3 Izvori
  3. PUBLISHED
  1. v1
  2. 3 Izvori
  3. PUBLISHED

Idi na pretragu Preuzmi slajdove

ScholarGateUporedite metode: Particle-in-Cell Beam Simulation · Geant4 Simulation. Preuzeto 2026-06-17 sa https://scholargate.app/sr/compare