A 400-MHz compact RF dipole (RFD) crab cavity design was jointly developed by Old Dominion University and SLAC under the support of US LARP program for the LHC HiLumi upgrade. The RFD cavity design is consisted of a rounded-square tank and two ridged deflecting poles, operating with a TE11-like dipole mode, which is the lowest mode of the cavity. A prototype RFD cavity is being manufactured and will be tested on the SPS beam line at CERN. The coaxial fundamental Power Coupler (FPC) of the prototype cavity was re-optimized to minimizing the power heating on the coupler internal antenna. A hi-pass filter HOM damping coupler was developed to achieve the required wakefield damping while maintaining a compact size to fit into the beam line space...
The High-Luminosity upgrade for the LHC relies on a set of RF Crab Cavities for reaching its goals. ...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
In preparation for the LHC High Luminosity upgrade, a 400 MHz crab cavity has been developed jointly...
A 400-MHz compact RF dipole (RFD) crab cavity design was jointly developed by Old Dominion Universit...
A 400-MHz compact RF dipole (RFD) crab cavity design was jointly developed by Old Dominion Universit...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The High-Luminosity upgrade for the LHC relies on a set of RF Crab Cavities for reaching its goals. ...
The High-Luminosity upgrade for the LHC relies on a set of RF Crab Cavities for reaching its goals. ...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
In preparation for the LHC High Luminosity upgrade, a 400 MHz crab cavity has been developed jointly...
A 400-MHz compact RF dipole (RFD) crab cavity design was jointly developed by Old Dominion Universit...
A 400-MHz compact RF dipole (RFD) crab cavity design was jointly developed by Old Dominion Universit...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The RF-Dipole Crabbing Cavity designed for the LHC High Luminosity Upgrade includes two higher order...
The High-Luminosity upgrade for the LHC relies on a set of RF Crab Cavities for reaching its goals. ...
The High-Luminosity upgrade for the LHC relies on a set of RF Crab Cavities for reaching its goals. ...
Crab cavities are adapted as the baseline design for the LHC HiLumi upgrade to achieve head-on beam-...
In preparation for the LHC High Luminosity upgrade, a 400 MHz crab cavity has been developed jointly...