Linacs for high-energy physics, as well as for industry and medicine, require accelerating structures which are compact, robust, and cost-effective. Small foot-print linacs require high-accelerating gradients. Currently, stable-operating gradients, exceeding 100 MV/m, have been demonstrated at SLAC National Accelerator Laboratory, CERN, and KEK at X-band frequencies. Recent experiments show that accelerating cavities made out of hard copper alloys achieve better high-gradient performance as compared with soft copper cavities. In the scope of a decade-long collaboration between SLAC, INFN-Frascati, and KEK on the development of innovative high-gradient structures, this particular study focuses on the technological developments directed to s...
The CLIC study group at CERN has built two X-band accelerating structures to be tested at SLAC in NL...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
We are exploring the physics and frequency-scaling of vacuum rf breakdowns at sub-THz frequencies. W...
This communication focuses on the technological developments aiming to show the viability of novel w...
Normal conducting radio-frequency (rf) particle accelerators have many applications, including colli...
The development of high gradient accelerating structures is one of the leading activities of the acc...
Vacuum radio-frequency (rf) breakdown is one of the major factors that limit operating accelerating ...
Accelerating gradients in excess of 100 MV/m are essential for future multi-TeV linear colliders in ...
Accelerating gradients in excess of 100 MV/m are essential for future multi-TeV linear colliders in ...
High energy physics experiments using particle accelerators as well as industrial and medical applic...
Accelerating gradients in excess of 100 MV/m are essential for future multi-TeV linear colliders in ...
This paper explores the physics of vacuum rf breakdowns in subterahertz high-gradient traveling-wave...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
Pure oxygen-free high-conductivity copper is a widely used material for manufacturing accelerating c...
The CLIC study is investigating a number of different materials at different frequencies in order to...
The CLIC study group at CERN has built two X-band accelerating structures to be tested at SLAC in NL...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
We are exploring the physics and frequency-scaling of vacuum rf breakdowns at sub-THz frequencies. W...
This communication focuses on the technological developments aiming to show the viability of novel w...
Normal conducting radio-frequency (rf) particle accelerators have many applications, including colli...
The development of high gradient accelerating structures is one of the leading activities of the acc...
Vacuum radio-frequency (rf) breakdown is one of the major factors that limit operating accelerating ...
Accelerating gradients in excess of 100 MV/m are essential for future multi-TeV linear colliders in ...
Accelerating gradients in excess of 100 MV/m are essential for future multi-TeV linear colliders in ...
High energy physics experiments using particle accelerators as well as industrial and medical applic...
Accelerating gradients in excess of 100 MV/m are essential for future multi-TeV linear colliders in ...
This paper explores the physics of vacuum rf breakdowns in subterahertz high-gradient traveling-wave...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
Pure oxygen-free high-conductivity copper is a widely used material for manufacturing accelerating c...
The CLIC study is investigating a number of different materials at different frequencies in order to...
The CLIC study group at CERN has built two X-band accelerating structures to be tested at SLAC in NL...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
We are exploring the physics and frequency-scaling of vacuum rf breakdowns at sub-THz frequencies. W...