نتایج جستجو برای: bdsim geant4
تعداد نتایج: 1272 فیلتر نتایج به سال:
background: to reduce the dose to normal tissues surrounding the treated breast, a uniform magnetic field was used within a humanoid phantom in breast radiotherapy. materials and methods: monte carlo simulations were performed with geant4, irradiating humanoid phantoms in a magnetic field. to reconstruct phantoms, computed tomography (ct) data slices of four patients were used for the monte car...
D.H. Wright, D. Aston, M.L. Kocian, H. Marsiske SLAC, Stanford, CA 94025, USA W.S Lockman, D.C. Williams University of California at Santa Cruz, Institute for Particle Physics, Santa Cruz, CA 95064, USA A.W. Weidemann, J.R. Wilson University of South Carolina, Columbia, SC 29208, USA T.B. Moore University of Massachusetts, Amherst, MA 01003, USA A.J. Lyon University of Manchester, Manchester M1...
Angular distributions of charged particles obtained with Geant4 simulation are compared with experimental data and with the Highland parametrisation.
The energy deposition on the ISIS muon target and the temperature profiles are analysed in this paper. The thermal modelling is performed using the GEANT4 Monte Carlo code. Heat deposition patterns are also simulated for alternative target geometries. Energy deposition in the collimators is also discussed.
Using Geant4 Monte-Carlo simulations the potential of the Low Energy Neutrino Astronomy (LENA) liquid scintillator detector for the investigation of a possible proton decay within the channel p → Kν is discussed. Special emphasis is given to the study of background events.
In this paper we present the results of GEANT4 simulations of the production of surface muons as a function of energy of the incident protons on a graphite target. A validation of the GEANT4 hadronic physics models has been performed by comparing the results with experimental data from the Lawrence Radiation Laboratory, United States. Considering the ISIS muon target as a reference, simulations...
Optimisation Studies of Accelerator Driven Fertile to Fissile Conversion Rates in Thorium Fuel Cycle
The need for proliferation-resistance, longer fuel cycles, higher burn up and improvedwaste form characteristics has led to a renewed worldwide interest in thorium-based fuels and fuel cycles. In this paper the GEANT4 Monte Carlo code has been used to simulate the Thorium-Uranium fuel cycle. The accelerator driven fertile to fissile conversion rates have been calculated for various geometries. ...
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