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This technology is potentially an ultra compact accekrator/pulsed power driver. This new accelerator relies on three new components an ultra-high gradient insulator, an asymmetric Blumle@ and low jitter switches. In this repo~ we fmsed our attention on the first two components of the DWA system: the insulators and the asymmetric Bhunlein. First, we sought to develop the necessq design tools to model and scale the behavior of the high gradient insulator. , initiation and creation of the surface discharge).
Appl. , 77, 2916 (1995). M. L. Kro~ D. Smitk D. N. E. J. Caporaso, P. Vitello, N. Tishchenko, “Vacuum Surface Flashover and High Pressure Gas Streamers: (1997). L. , “Measured and Theoretical Characterization of the RF Properties of Stacked, H@-Gradknt Insulator Material” Proceedings of the 1997 IEEE Particle Accelerator Conf’ence, Vancouver, BC, Cana~ 12–16 May 1997.  S. L. , “Longitudinal Impedance Measurements of an RK-TBA kduction Accelerating Gap” Proceedings of the 1997 IEEE Particle Accelerator Conference, Vancouver, BC, Canad~ 12–16 May 1997.
Initiation and creation of the surface discharge). From our study of present models, we conclude that an accurate theoretical model of surface breakdown must not only include aspects of standard models, but must also treat photo-ionization during the long time scale evolution of the streamer discharge though the evaporated gas. That is, the tip of a propagating streamer is known to produce intense high energy radiation emission which we believe can lead to photoconduction in the insulator. As conduction in the insulator will strongly modfi the voltage which drives the streamer discharge, accurate coupling of the streamer to the insulator were included.
Advanced Accelerator Theory Development