Preparatory procedure and equipment for the European x-ray free electron laser cavity implementation

The European x-ray free electron laser is under construction at Deutsches Elektronen-Synchrotron (DESY). The electron beam energy of up to 17.5 GeV will be achieved by using superconducting accelerator technology. Final prototyping, industrialization, and new infrastructure are the actual challenges...

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Veröffentlicht in:Physical review special topics. PRST-AB. Accelerators and beams 2010-07, Vol.13 (7), p.071001, Article 071001
Hauptverfasser: Reschke, D., Bandelmann, R., Buettner, T., Escherich, K., Goessel, A., v.d.Horst, B., Iversen, J., Klinke, D., Kreps, G., Krupka, N., Lilje, L., Matheisen, A., Moeller, W.-D., Zimmermann, H. Morales, Mueller, C., Petersen, B., Proch, D., Schmoekel, M., Steinhau-Kuehl, N., Thie, J.-H., Weise, H., Weitkaemper, H., Carcagno, R., Khabiboulline, T. N., Kotelnikov, S., Makulski, A., Nogiec, J., Nehring, R., Ross, M., Schappert, W.
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Sprache:eng
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Zusammenfassung:The European x-ray free electron laser is under construction at Deutsches Elektronen-Synchrotron (DESY). The electron beam energy of up to 17.5 GeV will be achieved by using superconducting accelerator technology. Final prototyping, industrialization, and new infrastructure are the actual challenges with respect to the accelerating cavities. This paper describes the preparation strategy optimized for the cavity preparation procedure in industry. For the industrial fabrication and preparation, several new hardware components have been already developed at DESY. The design and construction of a semiautomated rf-measurement machine for dumbbells and end groups are described. In a collaboration among FNAL, KEK, and DESY, an automatic cavity tuning machine has been designed and four machines are under construction. The functionality of these machines with special attention to safety aspects is described in this paper. A new high pressure rinsing system has been developed and is operational.
ISSN:1098-4402
1098-4402
2469-9888
DOI:10.1103/PhysRevSTAB.13.071001