Author/Authors :
Dolbilov، نويسنده , , G.V. and Azorsky، نويسنده , , N.I. and Fateev، نويسنده , , A.A. and Lebedev، نويسنده , , N.I. and Petrov، نويسنده , , V.A. and Shvetsov، نويسنده , , V.S. and Yurkov، نويسنده , , M.V. and Balakin، نويسنده , , V.E. and Avrakhov، نويسنده , , P.V. and Kazakov، نويسنده , , S.Yu. and Solyak، نويسنده , , N.A. and Teryaev، نويسنده , , V.E. and Vogel، نويسنده , , V.F.، نويسنده ,
Abstract :
This paper is devoted to a problem of the optimal design of the electrodynamic structure of the X-band klystron for a linear collider. It is shown that the optimal design should provide a large aperture and a high power gain, about 80 dB. The most severe problem arising here is that of parasitic self-excitation of the klystron, which becomes more complicated at increasing aperture and power gain. Our investigations have shown that traditional methods for suppressing the self-excitation become ineffective at the desired technical parameters of the klystron. In this paper we present a novel concept of a wide aperture klystron with distributed suppression of parasitic oscillations. Results of an experimental study of the wide-aperture relativistic klystron for VLEPP are presented. Investigations have been performed using the driving beam of the JINR LIA-3000 induction accelerator (E = 1 MeV, I = 250 A, τ = 250 ns). To suppress self-excitation parasitic modes we have used the technique of RF absorbing drift tubes. As a result, we have obtained design output parameters of the klystron and achieved a level of 100 MW output power.