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Autor:
D.Alesini, C.Biscari, R.Boni, A.Clozza, G.Di Pirro, A.Drago, A.Gallo, A.Ghigo, F.Marcellini, C.Milardi, M.A.Preger, C.Sanelli, F.Sannibale, M.Serio, F.Sgamma, A.Stecchi, A.Stella, M.Zobov, R.Bossart, H.Braun, P.Brown, G.Carron, V.Chohan, R.Corsini, E.D'Amico, S.Deghaye, J.P.Delahaye, F.DiMaio, S.Doebert, B.Dupuy, G.Geschonke, L.GröNing, G.Guignard, H.Hellgren, S.Hutchins, J.H.Lewis, E.Jensen, G.McMonagle, A.Millich, J.Monteiro, T.Otto, P.Pearce, E.Peschardt, R.Pittin, M.Poehler, J.P.Potier, L.Rinolfi, T.Risselada, G.Rossat, P.Royer, D.Schulte, J.Sladen, G.Suberlucq, I.Syratchev, F.Tecker, H.Trautner, L.Thorndahl, I.Wilson, W.Wünsch, A.Yeremian, R.Miller, R.Ruth, R.Koontz, I.N.Ross, E. Bente, G. Valentine, G.Bienvenu, M.Bernard, M.Omeich, R.Roux, T.Garvey
The design of CLIC is based on a two-beam scheme, where short pulses of high power 30 GHz RF are extracted from a drive beam running parallel to the main beam. The 3rd generation CLIC Test Facility (CTF3) will demonstrate the generation of the drive
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::a66e241f0e086c72253e46b8baa1ea68