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Monte-Carlo-Neutronen- und Teilchentransport×Dosimetriemessung×
FachgebietKernphysikKernphysik
FamilieProcess / pipelineProcess / pipeline
Entstehungsjahr19491896
UrheberNicholas Metropolis, Stanislaw UlamWilhelm Röntgen, Henri Becquerel
Typprobabilistic computational methodexperimental measurement methodology
Wegweisende QuelleMetropolis, N., & Ulam, S. (1949). The Monte Carlo Method. Journal of the American Statistical Association, 44(247), 335–341. DOI ↗Knoll, G. F. (2010). Radiation Detection and Measurement (4th ed.). John Wiley & Sons. link ↗
AliasnamenMonte Carlo simulation, stochastic transport, particle history methoddose measurement, radiation monitoring, exposure quantification
Verwandt55
ZusammenfassungMonte Carlo neutron and particle transport is a stochastic simulation method that tracks individual particle histories through matter, developed by Metropolis and Ulam in 1949 during the Manhattan Project. By sampling random numbers to determine collision locations, energy transfers, and scattering angles, it produces unbiased estimates of reaction rates, flux distributions, and detector responses without discretizing angle or energy variables.Dosimetry measurement is the experimental quantification of radiation dose and exposure, originating from Röntgen and Becquerel's 1890s discoveries. It employs specialized detectors (ion chambers, TLD, Geiger counters) to measure photon and particle energy deposition in biological tissue or materials, providing direct evidence of exposure for worker protection, patient dose verification, and environmental monitoring.
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ScholarGateMethoden vergleichen: Monte Carlo Neutron & Particle Transport · Dosimetry Measurement. Abgerufen am 2026-06-20 von https://scholargate.app/de/compare