Fermilab is developing a facility for vertical testing of SRF cavities as part of its ILC program. The RF system for this facility is based on the proven production cavity test systems used at Jefferson Lab for CEBAF and SNS cavity testing. The design approach is modular in nature, using commercial-off-the-shelf (COTS) components. This yields a system that can be easily debugged and modified, and with ready availability of spares. Comprehensive data acquisition and control is provided by a PXI-based hardware platform in conjunction with software developed in the LabView programming environment
A superconducting RF accelerator test facility is currently under construction at Fermilab. The acce...
As part of the research and development towards the International Linear Collider (ILC), several tes...
The International Linear Collider (ILC) will require ~20,000 Superconducting Radio-Frequency (SRF) c...
Fermilab is developing a facility for vertical testing of SRF cavities as part of its ILC program. T...
As part of its ILC program, Fermilab is developing a facility for vertical testing of SRF cavities. ...
The major controls and instrumentation systems for the ILC test areas and the NML test accelerator a...
Fermilab is heavily engaged and making strong technical contributions to the superconducting radio-f...
Fermilab is building a Vertical Cavity Test Facility (VCTF) to provide for R&D and pre-productio...
A variable input coupler has been designed for the Fermilab vertical cavity test facility (VCTF), a ...
An ILC R&D facility is being constructed in the NML building at Fermilab which, in addition to a...
Recent deployment of a digital LLRF system within the cavity testing framework of CERN’s vertical te...
Fermilab is building a cryomodule containing four 3.9 GHz superconducting radio frequency (SRF) cavi...
The present configuration of an ILC main LINAC RF station has 26 nine cell cavities driven from one ...
A superconducting RF vertical test facility (VTF) has been constructed at Daresbury Laboratory to en...
At Fermilab, 9-cell 1.3 GHz superconducting RF (SRF) cavities are prepared, qualified, and assembled...
A superconducting RF accelerator test facility is currently under construction at Fermilab. The acce...
As part of the research and development towards the International Linear Collider (ILC), several tes...
The International Linear Collider (ILC) will require ~20,000 Superconducting Radio-Frequency (SRF) c...
Fermilab is developing a facility for vertical testing of SRF cavities as part of its ILC program. T...
As part of its ILC program, Fermilab is developing a facility for vertical testing of SRF cavities. ...
The major controls and instrumentation systems for the ILC test areas and the NML test accelerator a...
Fermilab is heavily engaged and making strong technical contributions to the superconducting radio-f...
Fermilab is building a Vertical Cavity Test Facility (VCTF) to provide for R&D and pre-productio...
A variable input coupler has been designed for the Fermilab vertical cavity test facility (VCTF), a ...
An ILC R&D facility is being constructed in the NML building at Fermilab which, in addition to a...
Recent deployment of a digital LLRF system within the cavity testing framework of CERN’s vertical te...
Fermilab is building a cryomodule containing four 3.9 GHz superconducting radio frequency (SRF) cavi...
The present configuration of an ILC main LINAC RF station has 26 nine cell cavities driven from one ...
A superconducting RF vertical test facility (VTF) has been constructed at Daresbury Laboratory to en...
At Fermilab, 9-cell 1.3 GHz superconducting RF (SRF) cavities are prepared, qualified, and assembled...
A superconducting RF accelerator test facility is currently under construction at Fermilab. The acce...
As part of the research and development towards the International Linear Collider (ILC), several tes...
The International Linear Collider (ILC) will require ~20,000 Superconducting Radio-Frequency (SRF) c...