The Medium Energy Booster (MEB) is the third of the SSCL accelerators and the largest of the resistive magnet synchrotrons. It accelerates protons from an injection momentum of 12 GeV/c to a top momentum of 200 GeV/c. A beam injection system has been designed to inject the beam transferred from the Low Energy Booster onto the MEB closed orbit in the MEB injection insertion region. The beam is injected via a vertical bending Lambertson septum magnet and a horizontal kicker with appropriate matching and very little beam loss and emittance dilution. The beam optics of the injection system is described in this paper. The required parameters of the Lambertson septum magnet and the injection kicker are given
The changeover from Linac2 to Linac4 in CERN’s injector chain will allow increasing the injection en...
The PEP beam-transport system was designed to transmit 4-to-15 GeV electron and positron beams from ...
The H- beam from the proposed LINAC4 will be injected into the four existing rings of the PS Booster...
The Medium Energy Booster (MEB) is a synchrotron using conventional (non-superconducting) magnets. I...
Requirements for the transfer kickers that move beam from the Low-Energy Booster (LEB) to the Medium...
A 6 MeV 2 A electron cooling system is being designed for the SSC Medium Energy Booster (MEB). This ...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
The PLS injects 2.0 GeV electron beams from Linac to storage ring (SR). After storing the current to...
The Superconducting Super Collider`s Medium Energy Booster Abort (MEBA) kicker modulator will supply...
To facilitate H- injection from Linac4 to the PS Booster via the transfer line the BI.SMV10 (Booster...
PEP II or the B Factory consists of two asymmetric storage rings. The injection energy for electrons...
Each stage of an accelerator system has a limited dynamic range and therefore a chain of stages is r...
The injection system must provide the electrons and positrons for the beams of the two linacs. The l...
Since 1978, Linac2 produces beams of 50 MeV protons with a current around 160 mA, which are injected...
Since 1978, Linac2 produces beams of 50 MeV protons with a current around 160 mA, which are injected...
The changeover from Linac2 to Linac4 in CERN’s injector chain will allow increasing the injection en...
The PEP beam-transport system was designed to transmit 4-to-15 GeV electron and positron beams from ...
The H- beam from the proposed LINAC4 will be injected into the four existing rings of the PS Booster...
The Medium Energy Booster (MEB) is a synchrotron using conventional (non-superconducting) magnets. I...
Requirements for the transfer kickers that move beam from the Low-Energy Booster (LEB) to the Medium...
A 6 MeV 2 A electron cooling system is being designed for the SSC Medium Energy Booster (MEB). This ...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
The PLS injects 2.0 GeV electron beams from Linac to storage ring (SR). After storing the current to...
The Superconducting Super Collider`s Medium Energy Booster Abort (MEBA) kicker modulator will supply...
To facilitate H- injection from Linac4 to the PS Booster via the transfer line the BI.SMV10 (Booster...
PEP II or the B Factory consists of two asymmetric storage rings. The injection energy for electrons...
Each stage of an accelerator system has a limited dynamic range and therefore a chain of stages is r...
The injection system must provide the electrons and positrons for the beams of the two linacs. The l...
Since 1978, Linac2 produces beams of 50 MeV protons with a current around 160 mA, which are injected...
Since 1978, Linac2 produces beams of 50 MeV protons with a current around 160 mA, which are injected...
The changeover from Linac2 to Linac4 in CERN’s injector chain will allow increasing the injection en...
The PEP beam-transport system was designed to transmit 4-to-15 GeV electron and positron beams from ...
The H- beam from the proposed LINAC4 will be injected into the four existing rings of the PS Booster...