The ISIS Facility is the pulsed neutron and muon source based at the Rutherford Appleton Laboratory in the UK. Operation centres on the 50 Hz synchrotron, which accelerates ~3x1013 protons per pulse from 70 to 800 MeV, providing a mean power of about 0.2 MW. As commissioning of a second harmonic RF system is completed, it is expected that the main loss mechanisms will be related to transverse space charge forces, which are particularly strong during the multi-turn injection and trapping processes. Here, we describe progress in ongoing studies to understand more about what drives loss and thus limits intensity. Results from simulations and application of relevant theory are presented, concentrating on the effects thought most important for t...
Space charge is typically one of the performance limitations for the operation of high intensity and...
The performance of heavy ion beams in the CERN Low Energy Ion Ring is mainly limited by beam loss oc...
We have studied the combined influence of magnet non-linearities, space charge and bunch shapes cons...
ISIS is the spallation neutron source at the Rutherford Appleton Laboratory in the UK. Operation cen...
High intensity proton synchrotrons provide beams for several types of facility around the world, inc...
The ISIS Facility at the Rutherford Appleton Laboratory in the UK produces intense neutron and muon ...
We report about recent advances in understanding space-charge dependent beam loss and emittance grow...
The proposed Mu2e experiment to search for direct {mu} {yields} e conversion at Fermilab plans slow,...
The combined effect of space charge and nonlinear resonance on beam loss and emittance was measured ...
Space charge effects in high intensity and high brightness synchrotrons can lead to undesired beam e...
Beam loss detection at the ISIS synchrotron is achieved using a series of 3 and 4 metre long argon g...
Space charge produces a large incoherent tune-spread which, in presence of betatronic resonances, co...
Results from longitudinal tracking studies for a high intensity proton synchrotron designed for a 1-...
Feasibility studies for 2-GeV, 1-MW and 10-GeV, 5-MW rapid cycling synchrotrons (RCS) for spallation...
The recent accelerator development programme leading to increased operational intensity and to impro...
Space charge is typically one of the performance limitations for the operation of high intensity and...
The performance of heavy ion beams in the CERN Low Energy Ion Ring is mainly limited by beam loss oc...
We have studied the combined influence of magnet non-linearities, space charge and bunch shapes cons...
ISIS is the spallation neutron source at the Rutherford Appleton Laboratory in the UK. Operation cen...
High intensity proton synchrotrons provide beams for several types of facility around the world, inc...
The ISIS Facility at the Rutherford Appleton Laboratory in the UK produces intense neutron and muon ...
We report about recent advances in understanding space-charge dependent beam loss and emittance grow...
The proposed Mu2e experiment to search for direct {mu} {yields} e conversion at Fermilab plans slow,...
The combined effect of space charge and nonlinear resonance on beam loss and emittance was measured ...
Space charge effects in high intensity and high brightness synchrotrons can lead to undesired beam e...
Beam loss detection at the ISIS synchrotron is achieved using a series of 3 and 4 metre long argon g...
Space charge produces a large incoherent tune-spread which, in presence of betatronic resonances, co...
Results from longitudinal tracking studies for a high intensity proton synchrotron designed for a 1-...
Feasibility studies for 2-GeV, 1-MW and 10-GeV, 5-MW rapid cycling synchrotrons (RCS) for spallation...
The recent accelerator development programme leading to increased operational intensity and to impro...
Space charge is typically one of the performance limitations for the operation of high intensity and...
The performance of heavy ion beams in the CERN Low Energy Ion Ring is mainly limited by beam loss oc...
We have studied the combined influence of magnet non-linearities, space charge and bunch shapes cons...