We are exploring the physics and frequency-scaling of vacuum rf breakdowns at sub-THz frequencies. We present the experimental results of rf tests performed in metallic mm-wave accelerating structures. These experiments were carried out at the facility for advanced accelerator experimental tests (FACET) at the SLAC National Accelerator Laboratory. The rf fields were excited by the FACET ultrarelativistic electron beam. We compared the performances of metal structures made with copper and stainless steel. The rf frequency of the fundamental accelerating mode, propagating in the structures at the speed of light, varies from 115 to 140 GHz. The traveling wave structures are 0.1 m long and composed of 125 coupled cavities each. We determined th...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
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 ...
We are exploring the physics and frequency-scaling of vacuum rf breakdowns at sub-THz frequencies. W...
This paper explores the physics of vacuum rf breakdowns in subterahertz high-gradient traveling-wave...
Experiments with high gradient traveling-wave mm-wave metallic accelerating structures were performe...
We present an experimental study of a high gradient metallic accelerating structure at sub-THz frequ...
Experiments with high gradient traveling-wave mm-wave metallic accelerating structures were performe...
We present the experimental results of a systematic study of rf breakdown phenomenon in high vacuum ...
Normal conducting radio-frequency (rf) particle accelerators have many applications, including colli...
Our experiments are directed toward the understanding of the physics of rf breakdown in systems that...
We report the results of the first high power tests of single-cell traveling-wave and standing-wave ...
Linacs for high-energy physics, as well as for industry and medicine, require accelerating structure...
A new local field quantity is presented which gives the high-gradient performance limit of accelerat...
Vacuum radio-frequency (rf) breakdown is one of the major factors that limit operating accelerating ...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
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 ...
We are exploring the physics and frequency-scaling of vacuum rf breakdowns at sub-THz frequencies. W...
This paper explores the physics of vacuum rf breakdowns in subterahertz high-gradient traveling-wave...
Experiments with high gradient traveling-wave mm-wave metallic accelerating structures were performe...
We present an experimental study of a high gradient metallic accelerating structure at sub-THz frequ...
Experiments with high gradient traveling-wave mm-wave metallic accelerating structures were performe...
We present the experimental results of a systematic study of rf breakdown phenomenon in high vacuum ...
Normal conducting radio-frequency (rf) particle accelerators have many applications, including colli...
Our experiments are directed toward the understanding of the physics of rf breakdown in systems that...
We report the results of the first high power tests of single-cell traveling-wave and standing-wave ...
Linacs for high-energy physics, as well as for industry and medicine, require accelerating structure...
A new local field quantity is presented which gives the high-gradient performance limit of accelerat...
Vacuum radio-frequency (rf) breakdown is one of the major factors that limit operating accelerating ...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
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 ...