In high intensity proton rings, collimation is needed in order to maintain reasonable levels of residual activation and allow hands-on maintenance. Small acceptance to emittance ratio and restrained longitudinal space become important restrictions when dealing with low energy rings. The constraints and specifications when designing a collimation system for this type of machine will be reviewed. The SNS accumulator ring will serve as an examples long which we will illustrate the optimization path. Experimental studies of collimation with 1.3 GeV proton beams are currently under way in the U-70 machine in Protvino. The first results will be presented
The goal of the proposed Spallation Neutron Source (SNS) is to provide a short pulse proton beam of ...
The High Energy Beam Transport (HEBT) and Ring to Target Beam Transport (RTBT) lines of the Spallati...
The goal of the proposed Spallation Neutron Source (SNS) is to provide a short pulse proton beam of ...
In high intensity proton rings, collimation is needed in order to maintain reasonable levels of resi...
With a maximum level of uncontrolled loss of 10−4 of the total beam, the design of the Spallation Ne...
The collimation system for the Spallation Neutron Source accumulator ring is designed for a capture ...
The collimation system for the Spallation Neutron Source (SNS) accumulator ring will dissipate about...
A main concern in high intensity rings is the evaluation of uncontrolled losses and their minimizati...
The High-Power Proton-Synchrotron (HP-PS) will be delivering a 2 MW proton beam to a fixed target in...
Collimators are used to remove halo or off-momentum particles from the main proton beam. Off-momentu...
The Spallation Neutron Source (SNS) accelerator systems will provide a 1GeV, 1.44MW proton beam to a...
In transverse collimation systems, thin scrapers are used as primary collimators to interact with th...
The Super Proton Synchrotron (SPS) is the last accelerator in the LHC Injectors Chain. Its performan...
The design and construction of new injectors will allow to boost the luminosity of the LHC. Two cons...
Principles, design criteria and realization of reliable collimation systems for the high-power accel...
The goal of the proposed Spallation Neutron Source (SNS) is to provide a short pulse proton beam of ...
The High Energy Beam Transport (HEBT) and Ring to Target Beam Transport (RTBT) lines of the Spallati...
The goal of the proposed Spallation Neutron Source (SNS) is to provide a short pulse proton beam of ...
In high intensity proton rings, collimation is needed in order to maintain reasonable levels of resi...
With a maximum level of uncontrolled loss of 10−4 of the total beam, the design of the Spallation Ne...
The collimation system for the Spallation Neutron Source accumulator ring is designed for a capture ...
The collimation system for the Spallation Neutron Source (SNS) accumulator ring will dissipate about...
A main concern in high intensity rings is the evaluation of uncontrolled losses and their minimizati...
The High-Power Proton-Synchrotron (HP-PS) will be delivering a 2 MW proton beam to a fixed target in...
Collimators are used to remove halo or off-momentum particles from the main proton beam. Off-momentu...
The Spallation Neutron Source (SNS) accelerator systems will provide a 1GeV, 1.44MW proton beam to a...
In transverse collimation systems, thin scrapers are used as primary collimators to interact with th...
The Super Proton Synchrotron (SPS) is the last accelerator in the LHC Injectors Chain. Its performan...
The design and construction of new injectors will allow to boost the luminosity of the LHC. Two cons...
Principles, design criteria and realization of reliable collimation systems for the high-power accel...
The goal of the proposed Spallation Neutron Source (SNS) is to provide a short pulse proton beam of ...
The High Energy Beam Transport (HEBT) and Ring to Target Beam Transport (RTBT) lines of the Spallati...
The goal of the proposed Spallation Neutron Source (SNS) is to provide a short pulse proton beam of ...