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- W200380978 abstract "The comprehension of short range wakefields is essential for the design of CLIC. Useful tools are the Karl Bane’s formulae which provide geometrical parameterization of the short range wake for periodic rotational-symmetric structures. The comparison of 2D computations based on ABCI with predicted results and the study of the range of validity of these formulae are the subjects of this paper. An extended model for rounded iris structures is also proposed. INTRODUCTION The short range wakefield is one of the main limitations to be taken into account in the design of the CLIC accelerating structures. The short range wake, that can not be damped, determines the maximum charge per bunch and the minimum aperture of the structures, and has thus a strong impact on the luminosity of the collider and on the efficiency of the accelerator. The main tools for the study of the short range wake have been provided by Karl Bane in terms of analytical formulae that correlate the wake to the geometrical parameters of a periodic array of cells (1,2). K. Bane work has been done for the NLC accelerating structures. The validation of these formulae for a different geometrical range “CLIC range” is the first target of the present work. A study of the effect of rounded irises instead of rectangular ones is also presented. HIGH FREQUENCY LONGITUDINAL IMPEDANCE AND SHORT RANGE WAKE For a periodic array of cavities according to Yokoya and Bane [1,2] the high frequency impedance (so for large wave number k) is approximately given by:" @default.
- W200380978 created "2016-06-24" @default.
- W200380978 creator A5051478066 @default.
- W200380978 date "2008-09-04" @default.
- W200380978 modified "2023-09-26" @default.
- W200380978 title "Study of the Validity of K. Bane's Formulae for the CLIC Accelerator Structure" @default.
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