After introducing the subject of shielding high energy accelerators, point source, line-of-sight models, and in particular the Moyer model. are discussed. Their use in the shielding of proton and electron accelerators is demonstrated and their limitations noted. especially in relation to shielding in the forward direction provided by large, flat walls. The limitations of reducing problems to those using it cylindrical geometry description are stressed. Finally the use of different estimators for predicting dose is discussed. It is suggested that dose calculated from track-length estimators will generally give the most satisfactory estimate. (9 refs)
Energy- and angular distributions of neutrons behind concrete side shielding of proton accelerators ...
Helical tomotherapy is a relatively new intensity-modulated radiation therapy (IMRT) treatment for w...
Radiation protection aspects relevant to medical accelerators are discussed. An overview is first gi...
The goal of accelerator shielding design is to protect the workers, general public, and the environm...
The FLUKA Monte Carlo program was used to calculate the dose equivalent behind a homogeneous concret...
The FLUKA Monte Carlo program was used to calculate the dose equivalent behind a homogeneous concret...
Numerous recipes for designing lateral slab neutron shielding for electron accelerators are availabl...
This work presents an overview of radiation protection at high-energy electron accelerator facilitie...
With the advent of a new generation of high-energy and high-intensity proton accelerators such as th...
High energy X-rays from accelerators are used to irradiate food ingredients to prevent growth and de...
The prediction for the secondary neutron spectrum produced inside of-a thick shield is described. Th...
In shielding design of a radiotherapy treatment room, the requirements of dose limits outside the ro...
The secondary radiation field produced by seven different ion species (from hydrogen to nitrogen), i...
The role of Monte Carlo calculations in addressing machine protection and radiation protection chall...
The authors describe some of the work that they have done as a contribution to the Next Linear Colli...
Energy- and angular distributions of neutrons behind concrete side shielding of proton accelerators ...
Helical tomotherapy is a relatively new intensity-modulated radiation therapy (IMRT) treatment for w...
Radiation protection aspects relevant to medical accelerators are discussed. An overview is first gi...
The goal of accelerator shielding design is to protect the workers, general public, and the environm...
The FLUKA Monte Carlo program was used to calculate the dose equivalent behind a homogeneous concret...
The FLUKA Monte Carlo program was used to calculate the dose equivalent behind a homogeneous concret...
Numerous recipes for designing lateral slab neutron shielding for electron accelerators are availabl...
This work presents an overview of radiation protection at high-energy electron accelerator facilitie...
With the advent of a new generation of high-energy and high-intensity proton accelerators such as th...
High energy X-rays from accelerators are used to irradiate food ingredients to prevent growth and de...
The prediction for the secondary neutron spectrum produced inside of-a thick shield is described. Th...
In shielding design of a radiotherapy treatment room, the requirements of dose limits outside the ro...
The secondary radiation field produced by seven different ion species (from hydrogen to nitrogen), i...
The role of Monte Carlo calculations in addressing machine protection and radiation protection chall...
The authors describe some of the work that they have done as a contribution to the Next Linear Colli...
Energy- and angular distributions of neutrons behind concrete side shielding of proton accelerators ...
Helical tomotherapy is a relatively new intensity-modulated radiation therapy (IMRT) treatment for w...
Radiation protection aspects relevant to medical accelerators are discussed. An overview is first gi...