We report the building procedure of X-band copper structures using the electroforming and electroplating techniques. These techniques allow the deposition of copper layers on a suitable die and they can be used to build RF structures avoiding the high temperature brazing step in the standard technique. We show the constructed prototypes and low power RF measurements and discuss the results of the high power tests at SLAC National Accelerator Laboratory. (C) 2011 Published by Elsevier B.V
Low power rf measurements, S11, of electro-discharge ma-chined (EDM) diffusion bonded mm-wave travel...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
In the framework of many accelerator projects relying on RF superconducting technology, shape confor...
We report the building procedure of X-band copper structures using the electroforming and electropla...
This communication focuses on the technological developments aiming to show the viability of novel w...
The development of high gradient accelerating structures is one of the leading activities of the acc...
Abstract caused by voids in the copper. Our specification calls for a 3 microinch (RA) surface finis...
The RF Technology Development group at Fermilab is working together with the NLC and GLC groups at S...
The RF Technology Development group at Fermilab is working together with the NLC and GLC groups at S...
The RF Technology Development group at Fermilab is working together with the NLC and GLC groups at S...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
A prototype 11.994 GHz, traveling-wave accelerating structure for the Compact Linear Collider has be...
Linacs for high-energy physics, as well as for industry and medicine, require accelerating structure...
A prototype 11.994 GHz, traveling-wave accelerating structure for the Compact Linear Collider has be...
Low power rf measurements, S11, of electro-discharge ma-chined (EDM) diffusion bonded mm-wave travel...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
In the framework of many accelerator projects relying on RF superconducting technology, shape confor...
We report the building procedure of X-band copper structures using the electroforming and electropla...
This communication focuses on the technological developments aiming to show the viability of novel w...
The development of high gradient accelerating structures is one of the leading activities of the acc...
Abstract caused by voids in the copper. Our specification calls for a 3 microinch (RA) surface finis...
The RF Technology Development group at Fermilab is working together with the NLC and GLC groups at S...
The RF Technology Development group at Fermilab is working together with the NLC and GLC groups at S...
The RF Technology Development group at Fermilab is working together with the NLC and GLC groups at S...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
Abstract Two 11.424 GHz single cell standing wave accelerating structures have been fabricated for...
A prototype 11.994 GHz, traveling-wave accelerating structure for the Compact Linear Collider has be...
Linacs for high-energy physics, as well as for industry and medicine, require accelerating structure...
A prototype 11.994 GHz, traveling-wave accelerating structure for the Compact Linear Collider has be...
Low power rf measurements, S11, of electro-discharge ma-chined (EDM) diffusion bonded mm-wave travel...
Short copper standing wave (SW) structures operating at an X-band frequency have been recently desig...
In the framework of many accelerator projects relying on RF superconducting technology, shape confor...