A simple geometry is used to compare several of the available Monte Carlo software codes for radiation transport. EGSnrc, Geant4 and MCNP5 are all used to calculate the photon fluence produced from electrons incident on a copper target. Four energies for the isotropic point source are chosen to simulate the average and maximum emission energies of 32P and 90Y: (0.7, 1.71) MeV and (0.93, 2.28) MeV, respectively. The energy deposition in the copper target, the electron current at the target and the computational efficiency are also calculated. EGSnrc is found to be the only self-consistent code when comparing results calculated using the default transport parameters of the condensed history mode with those calculated in the single scattering ...
This work investigates the transport of electrons having energies near those of the atomic binding l...
Purpose: In this work, accuracy of the mcnp5 code in the electron transport calculations and its sui...
The transport of electrons and other charged particles is fundamentally different from that of neutr...
A simple geometry is chosen to highlight similarities and differences of current electron transport ...
International audienceIn view of their key role in radiation shielding and nuclear instrumentation a...
The aim of this research was to study the feasibility of bremsstrahlung photon production in target ...
SummaryBackgroundMonte Carlo simulation of radiation transport is considered to be one of the most a...
The data used in two Monte Carlo (MC) codes—EGSnrc and MCNPX—were compared, and a majority of the da...
An analogue Monte-Carlo code has been used to simulate the transport of positrons in copper with an ...
A linear accelerated electron beam is a powerful source of highly energetic photons that can be used...
This thesis demonstrates the feasibility of basing dose calculations for electrons in radiotherapy o...
Introduction: In recent decades, several Monte Carlo codes have been introduced for research and med...
The bremsstrahlung spectra produced by electrons impinging on thick targets are simulated using the ...
Three widely used Monte Carlo systems were benchmarked against recently published measurements of th...
1 Target preheat is a significant concern in inertial confinement fusion experiments because, when t...
This work investigates the transport of electrons having energies near those of the atomic binding l...
Purpose: In this work, accuracy of the mcnp5 code in the electron transport calculations and its sui...
The transport of electrons and other charged particles is fundamentally different from that of neutr...
A simple geometry is chosen to highlight similarities and differences of current electron transport ...
International audienceIn view of their key role in radiation shielding and nuclear instrumentation a...
The aim of this research was to study the feasibility of bremsstrahlung photon production in target ...
SummaryBackgroundMonte Carlo simulation of radiation transport is considered to be one of the most a...
The data used in two Monte Carlo (MC) codes—EGSnrc and MCNPX—were compared, and a majority of the da...
An analogue Monte-Carlo code has been used to simulate the transport of positrons in copper with an ...
A linear accelerated electron beam is a powerful source of highly energetic photons that can be used...
This thesis demonstrates the feasibility of basing dose calculations for electrons in radiotherapy o...
Introduction: In recent decades, several Monte Carlo codes have been introduced for research and med...
The bremsstrahlung spectra produced by electrons impinging on thick targets are simulated using the ...
Three widely used Monte Carlo systems were benchmarked against recently published measurements of th...
1 Target preheat is a significant concern in inertial confinement fusion experiments because, when t...
This work investigates the transport of electrons having energies near those of the atomic binding l...
Purpose: In this work, accuracy of the mcnp5 code in the electron transport calculations and its sui...
The transport of electrons and other charged particles is fundamentally different from that of neutr...