Paper |
Title |
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TUPB046 |
Experience on Design, Fabrication and Testing of a Large Grain ESS Medium Beta Prototype Cavity |
484 |
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- M. Bertucci, A. Bignami, A. Bosotti, J.F. Chen, P. Michelato, L. Monaco, R. Paparella, D. Sertore
INFN/LASA, Segrate (MI), Italy
- C. Pagani
Università degli Studi di Milano & INFN, Segrate, Italy
- S. Pirani
ESS, Lund, Sweden
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INFN-LASA built a complete Medium Beta cavity, based on the ESS prototype design, with novel large-grain material sliced in sheets from an ingot provided by CBMM manufacturing experience. Design and fabrication are reported as well as results on the physical and chemical analyses performed on samples at different cavity production stages. Results from the cold tests performed are also summarized and critically discussed in view of future R&D activities
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SRF2017-TUPB046
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TUPB047 |
Passband Modes Excitation Triggered by Field Emission in ESS Medium Beta Cavity Prototype |
489 |
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- J.F. Chen, M. Bertucci, A. Bosotti, P. Michelato, L. Monaco, R. Paparella, D. Sertore
INFN/LASA, Segrate (MI), Italy
- M. Eshraqi, M. Lindroos, S. Pirani
ESS, Lund, Sweden
- C. Pagani
Università degli Studi di Milano & INFN, Segrate, Italy
- T.P.Å. Åkesson
Lund University, Department of Physics, Lund, Sweden
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During the first vertical test of ESS Medium Beta large-grain prototype cavity in INFN-LASA, a phenomenon of coexisting two passband-modes was observed – 4π/6 mode was excited spontaneously during the power rise of 3π/6 mode. This phenomenon is most likely due to the field-emission electrons that transfer their energy gained from the 3π/6 mode to the 4π/6 mode. In this paper, we present the experimental results, the excitation mechanism and the related simulation results.
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DOI • |
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※ https://doi.org/10.18429/JACoW-SRF2017-TUPB047
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TUPB048 |
INFN- LASA Medium Beta Cavity Prototypes for ESS Linac |
494 |
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- D. Sertore, M. Bertucci, A. Bignami, A. Bosotti, J.F. Chen, P. Michelato, L. Monaco, R. Paparella
INFN/LASA, Segrate (MI), Italy
- C. Pagani
Università degli Studi di Milano & INFN, Segrate, Italy
- S. Pirani
ESS, Lund, Sweden
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INFN-LASA, in the framework of INFN contribution to the European Spallation Source, has developed, produced and tested 704.4 MHz Medium Beta (β = 0.67) cavities. Mode separation and avoidance of HOM excitation by machine line frequencies have driven the cavity design. The production at the industry, also in view of the INFN in-kind contribution of series cavities, has been done "build-to-print" and we have implemented our own quality control process, based on our XFEL experience, from raw material to cavity ready for test. The cavities have been then cold tested in our upgraded Vertical Test Facility. In this paper, we report on our experience on the different phases of the cavity production and test processes.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SRF2017-TUPB048
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TUPB070 |
INFN-LASA Cavity Design for PIP-II LB650 Cavity |
547 |
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- C. Pagani
Università degli Studi di Milano & INFN, Segrate, Italy
- M. Bertucci, A. Bignami, A. Bosotti, J.F. Chen, P. Michelato, L. Monaco, R. Paparella, D. Sertore
INFN/LASA, Segrate (MI), Italy
- S. Pirani
ESS, Lund, Sweden
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INFN-LASA is going to join the international partnership for Fermilab PIP-II project and to provide a novel design for the 650 MHz cavity of the 0.61 beta linac section, plug compatible with the Fermilab Cryomodule design. This paper reports the cavity design features both from the electro-magnetic and mechanical aspects, with focus on the rationales at the basis of the choice of main parameters. Furthermore, the current plans for the future R&D activity are here reported, including the production of two single cells and two complete cavities.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SRF2017-TUPB070
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