Issues concerning beam stability of the proposed Fermilab Proton Driver are studied in its Phase I. Although the betatron tune shifts are dominated by space charge, these shifts are less than 0.25 and will therefore not drive the symmetric and antisymmetric modes of the beam envelope into instability. The longitudinal space charge force is large and inductive inserts may be needed to compensate for the distortion of the rf potential. Although the longitudinal impedance is space charge dominated, it will not drive any microwave instability, unless the real part of the impedance coming from the inductive inserts and wall resistivity of the beam tube are large enough. The design of the beam tube is therefore very important in order to limit th...
The High Luminosity (HL)-LHC project at CERN aims at a luminosity increase by a factor ten and one o...
A high intensity, high power proton synchrotron is currently under consideration at Fermilab. The ma...
For Project X, the Fermilab Main Injector will be required to operate with 3 times higher bunch inte...
Issues concerning beam stability of the proposed Fermi-lab proton driver are studied in its Phase I....
The Fermilab Recycler Ring (permanent magnets) will be built on top of the Fermilab Main Injector sh...
The impedance budget of the Fermilab Main Injector (MI) is estimated, which includes the contributio...
The Fermilab Booster is a bottleneck limiting the proton beam intensity in the accelerator complex. ...
Space-charge effects on beam stabilities are studied for the proposed two-ring high-intensity Fermil...
Longitudinal and transverse instabilities in the isochronous accumulator for the CERN proton driver ...
Design details are given for accelerator physics issues, technical components and final beam bunchin...
Attempts to measure and describe beam instabilities have been made ever since they were first observ...
The longitudinal and transverse microwave instabilities are the two important limiting factors for t...
The subject of this paper will be the transverse stability in the SPS of the high intensity fixed ta...
To accelerate and deliver 1 MW of beam power at 16 GeV while keeping space charge in-duced tune shif...
The role of space charge field in transverse beam instability is revised including beam coupling imp...
The High Luminosity (HL)-LHC project at CERN aims at a luminosity increase by a factor ten and one o...
A high intensity, high power proton synchrotron is currently under consideration at Fermilab. The ma...
For Project X, the Fermilab Main Injector will be required to operate with 3 times higher bunch inte...
Issues concerning beam stability of the proposed Fermi-lab proton driver are studied in its Phase I....
The Fermilab Recycler Ring (permanent magnets) will be built on top of the Fermilab Main Injector sh...
The impedance budget of the Fermilab Main Injector (MI) is estimated, which includes the contributio...
The Fermilab Booster is a bottleneck limiting the proton beam intensity in the accelerator complex. ...
Space-charge effects on beam stabilities are studied for the proposed two-ring high-intensity Fermil...
Longitudinal and transverse instabilities in the isochronous accumulator for the CERN proton driver ...
Design details are given for accelerator physics issues, technical components and final beam bunchin...
Attempts to measure and describe beam instabilities have been made ever since they were first observ...
The longitudinal and transverse microwave instabilities are the two important limiting factors for t...
The subject of this paper will be the transverse stability in the SPS of the high intensity fixed ta...
To accelerate and deliver 1 MW of beam power at 16 GeV while keeping space charge in-duced tune shif...
The role of space charge field in transverse beam instability is revised including beam coupling imp...
The High Luminosity (HL)-LHC project at CERN aims at a luminosity increase by a factor ten and one o...
A high intensity, high power proton synchrotron is currently under consideration at Fermilab. The ma...
For Project X, the Fermilab Main Injector will be required to operate with 3 times higher bunch inte...