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The Superconducting TESLA Cavities
The conceptional design of the proposed linear electron-positron colliderTESLA is based on 9-cell 1.3 GHz superconducting niobium cavities with anaccelerating gradient of Eacc >= 25 MV/m at a quality factor Q0 > 5E+9. Thedesign goal for the cavities of the TESLA Test Facility (TTF) linac was s...
Autores principales: | Aune, B., Bandelmann, R., Bloess, D., Bonin, B., Bosotti, A., Champion, M., Crawford, C., Deppe, G., Dwersteg, B., Edwards, D.A., Edwards, H.T., Ferrario, M., Fouaidy, M., Gall, P-D., Gamp, A., Gössel, A., Graber, J., Hubert, D., Hüning, M., Juillard, M., Junquera, T., Kaiser, H., Kreps, G., Kuchnir, M., Lange, R., Leenen, M., Liepe, M., Lilje, L., Matheisen, A., Möller, W-D., Mosnier, A., Padamsee, H., Pagani, C., Pekeler, M., Peters, H-B., Peters, O., Proch, D., Rehlich, K., Reschke, D., Safa, H., Schilcher, T., Schmüser, P., Sekutowicz, J., Simrock, S., Singer, W., Tigner, M., Trines, D., Twarowski, K., Weichert, G., Weisend, J., Wojtkiewicz, J., Wolff, S., Zapfe, K. |
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Lenguaje: | eng |
Publicado: |
2000
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1103/PhysRevSTAB.3.092001 http://cds.cern.ch/record/429906 |
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