Today, elliptical superconducting RF (SRF) cavities are preferably made from deep-drawn niobium sheets as pursued at Jefferson Laboratory (JLab). The fabrication of a cavity incorporates various cavity cell machining, trimming and electron beam welding (EBW) steps as well as surface chemistry that add to forming errors creating geometrical deviations of the cavity shape from its design. An analysis of in-house built cavities over the last years revealed significant errors in cavity production. Past fabrication flaws are described and lessons learned applied successfully to the most recent in-house series production of multi-cell cavities
Most of the current research in superconducting radio frequency (SRF) cavities is focused on ways to...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
International audienceThis article shows a study on an alternative pathway for the fabrication of a ...
The technological and metallurgical requirements of material for highgradient superconducting caviti...
The positron and electron linacs of the International Linear Collider (ILC) will require over 14,000...
We report on the recent progress at Jefferson Lab in developing ultra high gradient and high Q{sub 0...
CERN’s R&D programme on the Superconducting Proton Linac’s (SPL) superconducting radio frequency (SR...
Superconducting radio frequency (SRF) cavities used in charged particle linear accelerators, are cur...
Recent coordination of thermometry with optical images has shown that obvious defects at specific lo...
An SRF photoinjector has been successfully tested in FZD under the collaboration of BESSY, DESY, FZD...
The International Linear Collider (ILC) will require ~20,000 Superconducting Radio-Frequency (SRF) c...
International audienceThe preparation of SRF cavities includes a lengthy, costly, and safety issued ...
As a result of collaboration between Jefferson Lab and niobium manufacturer Companhia Brasileira de ...
In the past decade, high Q values have been achieved in high purity Nb superconducting radio frequen...
In Europe and Japan there exist several companies which are qualified to fabricate superconducting c...
Most of the current research in superconducting radio frequency (SRF) cavities is focused on ways to...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
International audienceThis article shows a study on an alternative pathway for the fabrication of a ...
The technological and metallurgical requirements of material for highgradient superconducting caviti...
The positron and electron linacs of the International Linear Collider (ILC) will require over 14,000...
We report on the recent progress at Jefferson Lab in developing ultra high gradient and high Q{sub 0...
CERN’s R&D programme on the Superconducting Proton Linac’s (SPL) superconducting radio frequency (SR...
Superconducting radio frequency (SRF) cavities used in charged particle linear accelerators, are cur...
Recent coordination of thermometry with optical images has shown that obvious defects at specific lo...
An SRF photoinjector has been successfully tested in FZD under the collaboration of BESSY, DESY, FZD...
The International Linear Collider (ILC) will require ~20,000 Superconducting Radio-Frequency (SRF) c...
International audienceThe preparation of SRF cavities includes a lengthy, costly, and safety issued ...
As a result of collaboration between Jefferson Lab and niobium manufacturer Companhia Brasileira de ...
In the past decade, high Q values have been achieved in high purity Nb superconducting radio frequen...
In Europe and Japan there exist several companies which are qualified to fabricate superconducting c...
Most of the current research in superconducting radio frequency (SRF) cavities is focused on ways to...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
International audienceThis article shows a study on an alternative pathway for the fabrication of a ...