Two barrier RF systems were fabricated, tested and installed in the Fermilab Main Injector. Each can provide 8 kV rectangular pulses (the RF barriers) at 90 kHz. When a stationary barrier is combined with a moving barrier, injected beams from the Booster can be continuously deflected, folded and stacked in the Main Injector, which leads to doubling of the beam intensity. This paper gives a report on the beam experiment using this novel technology
The Fermilab Main Injector is moving toward providing 400 kW of 120 GeV proton beams using slip stac...
Fermilab's Main Injector on acceleration cycles to 120 GeV has been running a mixed mode operation d...
A novel method for beam manipulation, compression, and stacking using a broad band RF system in circ...
A novel wideband RF system, nicknamed the barrier RF, has been designed, fabricated and installed in...
A novel wideband RF system, nicknamed the barrier RF, has been designed, fabricated and installed in...
Two barrier RF systems were fabricated, tested and installed in the Fermilab Main Injector. Each can...
Abstract. Using rf barriers, 12 booster batches can be injected into the Fermilab Main Injector cont...
Two induction barrier rf systems have been designed and fabricated at Fermilab and installed in the ...
Using rf barriers, 12 booster batches can be injected into the Fermilab Main Injector continuously, ...
Instead of slip stacking, an alternate method of doubling the linear intensity of the Fermilab Main ...
This paper introduces a new method for stacking beams in the longitudinal phase space. It uses RF ba...
A key issue to upgrade the luminosity of the Tevatron Run2 program and to meet the neutrino requirem...
Abstract A key issue to upgrade the luminosity of the Tevatron Run2 program and to meet the neutrino...
Slip stacking has been onperational at Fermilab Main Injector (MI) since December 2004. The proton b...
The Main Injector (MI) at Fermilab is planning to use multi-batch slip stacking scheme in order to i...
The Fermilab Main Injector is moving toward providing 400 kW of 120 GeV proton beams using slip stac...
Fermilab's Main Injector on acceleration cycles to 120 GeV has been running a mixed mode operation d...
A novel method for beam manipulation, compression, and stacking using a broad band RF system in circ...
A novel wideband RF system, nicknamed the barrier RF, has been designed, fabricated and installed in...
A novel wideband RF system, nicknamed the barrier RF, has been designed, fabricated and installed in...
Two barrier RF systems were fabricated, tested and installed in the Fermilab Main Injector. Each can...
Abstract. Using rf barriers, 12 booster batches can be injected into the Fermilab Main Injector cont...
Two induction barrier rf systems have been designed and fabricated at Fermilab and installed in the ...
Using rf barriers, 12 booster batches can be injected into the Fermilab Main Injector continuously, ...
Instead of slip stacking, an alternate method of doubling the linear intensity of the Fermilab Main ...
This paper introduces a new method for stacking beams in the longitudinal phase space. It uses RF ba...
A key issue to upgrade the luminosity of the Tevatron Run2 program and to meet the neutrino requirem...
Abstract A key issue to upgrade the luminosity of the Tevatron Run2 program and to meet the neutrino...
Slip stacking has been onperational at Fermilab Main Injector (MI) since December 2004. The proton b...
The Main Injector (MI) at Fermilab is planning to use multi-batch slip stacking scheme in order to i...
The Fermilab Main Injector is moving toward providing 400 kW of 120 GeV proton beams using slip stac...
Fermilab's Main Injector on acceleration cycles to 120 GeV has been running a mixed mode operation d...
A novel method for beam manipulation, compression, and stacking using a broad band RF system in circ...