A study of the energy deposition in the Neutrino Factory baseline target station is presented. FLUKA simulations are used to study how much of the 4 MW proton beam power is distributed within the target station, and these results are compared with MARS simulations. About 10% of the beam power is deposited in the mercury jet target, with more than 2 MW absorbed by the tungsten-carbide shielding. Heating in the superconducting coils, that generate most of the magnetic field in the target region, can be substantially reduced by increasing the surrounding shielding. Estimates of radiation damage are also given for different sections of the target geometry
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
The Neutrino Factory is designed to produce an intense high energy neutrino beam from stored muons. ...
Beam-induced radiation effects have been simulated for 20 and 50 GeV muon storage rings designed for...
We present FLUKA and MARS simulation studies of the pion production and energy deposition in the Neu...
We present FLUKA and MARS simulation studies of the pion production and energy deposition in the Neu...
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
Much of the energy of the primary proton beam of Muon Collider/Neutrino Factory would be deposited i...
The need for intense muon beams for muon colliders [1] and for neutrino factories based on muon stor...
Neutrino beams from the decay of muons in a storage ring offer the prospect of very high flux, well-...
The function of the Neutrino Factory front end is to reduce the energy spread and size of the muon b...
In the Neutrino Factory and Muon Collider muons are produced by firing high energy protons onto a ta...
The International design study (IDS) study showed that a Neutrino Factory [1] seems to be the most p...
Beam-induced radiation eects have been simulated for a 30-GeV and a 50-GeV muon storage ring designe...
The Target Support Facility for a Neutrino Producing Research Facility extends from the pretarget, p...
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
The Neutrino Factory is designed to produce an intense high energy neutrino beam from stored muons. ...
Beam-induced radiation effects have been simulated for 20 and 50 GeV muon storage rings designed for...
We present FLUKA and MARS simulation studies of the pion production and energy deposition in the Neu...
We present FLUKA and MARS simulation studies of the pion production and energy deposition in the Neu...
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
Much of the energy of the primary proton beam of Muon Collider/Neutrino Factory would be deposited i...
The need for intense muon beams for muon colliders [1] and for neutrino factories based on muon stor...
Neutrino beams from the decay of muons in a storage ring offer the prospect of very high flux, well-...
The function of the Neutrino Factory front end is to reduce the energy spread and size of the muon b...
In the Neutrino Factory and Muon Collider muons are produced by firing high energy protons onto a ta...
The International design study (IDS) study showed that a Neutrino Factory [1] seems to be the most p...
Beam-induced radiation eects have been simulated for a 30-GeV and a 50-GeV muon storage ring designe...
The Target Support Facility for a Neutrino Producing Research Facility extends from the pretarget, p...
Efficient production and collection of a large number of muons is needed to make a neutrino factory ...
The Neutrino Factory is designed to produce an intense high energy neutrino beam from stored muons. ...
Beam-induced radiation effects have been simulated for 20 and 50 GeV muon storage rings designed for...