The linac of the European project Extreme Light Infrastructure-Nuclear Physics (ELI-NP) foresees the use of 12 traveling wave C-band accelerating structures. The cavities are 1.8 m long, quasiconstant gradient, and have a field phase advance per cell of 2π/3. They operate at 100 Hz repetition rate, and, because of the multibunch operation, they have been designed with a dipole higher-order mode (HOM) damping system to avoid beam breakup. The structures have symmetric input and output couplers and integrate, in each cell, a damping system based on silicon carbide (SiC) rf absorbers coupled to each cell through waveguides. An optimization of the electromagnetic and mechanical design has been done to simplify the fabrication and to reduce the ...
The 3 GHz drive beam accelerator of the CLIC Test Facility CTF3, currently under construction at CER...
Prototype accelerating structures for the Compact Linear Collider (CLIC) are being developed and hig...
Compact and more affordable, facilities for proton therapy are now entering the market of commercial...
The gamma beam system of the European Extreme Light Infrastructure–Nuclear Physics project foresees...
The CLIC multibunch accelerating structure, called the TDS (Tapered Damped Structure), relies on hea...
The CLIC study group at CERN has built two X-band HDS (Hybrid Damped Structure) accelerating structu...
For the CLIC two-beam scheme, a high-current, long-pulse drive beam is required for RF power generat...
The gamma beam system of the European ELI-NP proposal foresees the use of a multi-bunch train collid...
The first high power model of the C-band (5712 MHz) accelerating structure for the e+e- Linear Colli...
The rf design of an accelerating structure for the CLIC main linac is presented. The 12 GHz structur...
In recent years evidence has been found that the maximum sustainable gradient in an accelerating str...
The energy upgrade of the SPARC photo-injector from 160 to more than 260 MeV will be done by replaci...
The main effects which limit accelerating gradient in CLIC (Compact Linear Collider) main linac acce...
The energy upgrade of the SPARC photo-injector from 160 to more than 260 MeV will be done by replaci...
The main accelerating structures for the CLIC are designed to operate at an average accelerating gra...
The 3 GHz drive beam accelerator of the CLIC Test Facility CTF3, currently under construction at CER...
Prototype accelerating structures for the Compact Linear Collider (CLIC) are being developed and hig...
Compact and more affordable, facilities for proton therapy are now entering the market of commercial...
The gamma beam system of the European Extreme Light Infrastructure–Nuclear Physics project foresees...
The CLIC multibunch accelerating structure, called the TDS (Tapered Damped Structure), relies on hea...
The CLIC study group at CERN has built two X-band HDS (Hybrid Damped Structure) accelerating structu...
For the CLIC two-beam scheme, a high-current, long-pulse drive beam is required for RF power generat...
The gamma beam system of the European ELI-NP proposal foresees the use of a multi-bunch train collid...
The first high power model of the C-band (5712 MHz) accelerating structure for the e+e- Linear Colli...
The rf design of an accelerating structure for the CLIC main linac is presented. The 12 GHz structur...
In recent years evidence has been found that the maximum sustainable gradient in an accelerating str...
The energy upgrade of the SPARC photo-injector from 160 to more than 260 MeV will be done by replaci...
The main effects which limit accelerating gradient in CLIC (Compact Linear Collider) main linac acce...
The energy upgrade of the SPARC photo-injector from 160 to more than 260 MeV will be done by replaci...
The main accelerating structures for the CLIC are designed to operate at an average accelerating gra...
The 3 GHz drive beam accelerator of the CLIC Test Facility CTF3, currently under construction at CER...
Prototype accelerating structures for the Compact Linear Collider (CLIC) are being developed and hig...
Compact and more affordable, facilities for proton therapy are now entering the market of commercial...