Milling on two longitudinally split halves is one method to manufacture accelerating structures. This method is simple and allows one to avoid electromagnetic fields at bonding joints, making it attractive in manufacturing high-gradient accelerating structures. An X-band structure design with strong wakefield damping based on this manufacturing approach is studied in this work as an alternative design for the Compact Linear Collider (CLIC) main linac accelerating structures. The geometry of the structure is optimized to greatly reduce the surface fields, improve the efficiency, and suppress the wakefield. This structure features the baseline design of the CLIC main linac with additional advantages. This study may serve as a reference for de...
A new CLIC main‐linac accelerating‐structure design, HDS (Hybrid Damped Structure), with improved hi...
The main performance limits when designing acceler-ating structures for the Compact Linear Collider ...
The main performance limits when designing acceler-ating structures for the Compact Linear Collider ...
Milling on two longitudinally split halves is one method to manufacture accelerating structures. Thi...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
We present the RF design of a 12GHz Compact Linear Collider (CLIC) main linac accelerating structure...
A Damped Detuned Structure (DDS), known as CLIC_DDS_A [1], has been designed for the Compact Linear ...
The present design of the main accelerating structure for CLIC is based on heavy damping (WDS) with ...
Linear colliders are an option for lepton collision at several TeV. The Compact Linear Collider (CLI...
We present a new optimized design of the accelerating structure for the main linac of CLIC (Compact ...
The accelerating structures (AS) are one of the main components of the Compact LInear Collider (CLIC...
We report on the suppression of long-range wakefields in the main linacs of the CLIC collider. This ...
The baseline design of the Compact Linear Collider main linac accelerating structure is called ‘CLIC...
A new CLIC main-linac accelerating-structure design, HDS (Hybrid Damped Structure), with improved hi...
A new CLIC main‐linac accelerating‐structure design, HDS (Hybrid Damped Structure), with improved hi...
The main performance limits when designing acceler-ating structures for the Compact Linear Collider ...
The main performance limits when designing acceler-ating structures for the Compact Linear Collider ...
Milling on two longitudinally split halves is one method to manufacture accelerating structures. Thi...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
The Compact Linear Collider (CLIC) main linac uses waveguide damped structure as its baseline design...
We present the RF design of a 12GHz Compact Linear Collider (CLIC) main linac accelerating structure...
A Damped Detuned Structure (DDS), known as CLIC_DDS_A [1], has been designed for the Compact Linear ...
The present design of the main accelerating structure for CLIC is based on heavy damping (WDS) with ...
Linear colliders are an option for lepton collision at several TeV. The Compact Linear Collider (CLI...
We present a new optimized design of the accelerating structure for the main linac of CLIC (Compact ...
The accelerating structures (AS) are one of the main components of the Compact LInear Collider (CLIC...
We report on the suppression of long-range wakefields in the main linacs of the CLIC collider. This ...
The baseline design of the Compact Linear Collider main linac accelerating structure is called ‘CLIC...
A new CLIC main-linac accelerating-structure design, HDS (Hybrid Damped Structure), with improved hi...
A new CLIC main‐linac accelerating‐structure design, HDS (Hybrid Damped Structure), with improved hi...
The main performance limits when designing acceler-ating structures for the Compact Linear Collider ...
The main performance limits when designing acceler-ating structures for the Compact Linear Collider ...