A damped detuned structure for the main X-band linacs of CLIC is being investigated as an alternative design to the present baseline heavily damped structure. In our earlier designs we studied detuned structures, operating at 11.994 GHz, with a range of dipole bandwidths in order to ensure the structure satisfies beam dynamics and rf breakdown constraints. Here we report on the development of a damped and detuned structure which satisfies both constraints. Preparations for high power testing of the structure are also discussedA damped detuned structure for the main X-band linacs of CLIC is being investigated as an alternative design to the present baseline heavily damped structure. In our earlier designs we studied detuned structures, opera...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A Damped Detuned Structure (DDS), known as CLIC_DDS_A [1], has been designed for the Compact Linear ...
The main accelerating structures for the CLIC are designed to operate at an average accelerating gra...
The main accelerating structures for the CLIC are designed to operate at an average accelerating gra...
Linear colliders are an option for lepton collision at several TeV. The Compact Linear Collider (CLI...
A Damped Detuned Structure (DDS) for CLIC main linac has been proposed as an alternative to the pres...
The present design of the main accelerating structure for CLIC is based on heavy damping (WDS) with ...
A new 30 GHz multibunch accelerating structure incorporating both damping and detuning has been desi...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
The baseline design of the Compact Linear Collider main linac accelerating structure is called ‘CLIC...
We report on the suppression of long-range wakefields in the main linacs of the CLIC collider. This ...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A Damped Detuned Structure (DDS), known as CLIC_DDS_A [1], has been designed for the Compact Linear ...
The main accelerating structures for the CLIC are designed to operate at an average accelerating gra...
The main accelerating structures for the CLIC are designed to operate at an average accelerating gra...
Linear colliders are an option for lepton collision at several TeV. The Compact Linear Collider (CLI...
A Damped Detuned Structure (DDS) for CLIC main linac has been proposed as an alternative to the pres...
The present design of the main accelerating structure for CLIC is based on heavy damping (WDS) with ...
A new 30 GHz multibunch accelerating structure incorporating both damping and detuning has been desi...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
The baseline design of the Compact Linear Collider main linac accelerating structure is called ‘CLIC...
We report on the suppression of long-range wakefields in the main linacs of the CLIC collider. This ...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...
A CERN-SLAC-KEK collaboration on high gradient X-band accelerator structure development for CLIC has...