Title :
High current and high power fast kicker system conceptual design and technology overview for DeeMe experiment
Author :
Zhang, Wensheng ; Meng, Wenchao ; Pai, Chao-Yu ; Pile, P. ; Sandberg, J. ; Snydstrup, L. ; Tuozzolo, J. ; Aoki, Masaki ; Kawamura, Noritaka
Author_Institution :
Collider-Accel. Dept., Brookhaven Nat. Lab., Upton, NY, USA
Abstract :
A US-Japan collaboration for the high energy physics experiment DeeMe requires a multi GVA high deflection strength fast kicker system. A set of high current, high voltage and high power generators are going to drive a series of kicker magnets to deflect passing beam. Brookhaven researchers have been invited to conduct a conceptual design study for this challenging project. The basic option consists of a set of identical modulators, low impedance transmission lines, and large aperture high inductance kicker magnets. Each modulator shall be capable of driving the kicker magnet with an 8kA to 10kA pulsed current. A desired fast pulse fall time of 300 to 400 ns is the most challenging part of the design because of the high inductance magnetic load. The after pulse floor ripple tolerance is 5% or best achievable. Pulse repetition rate is 25Hz continuously. We have evaluated a wide range of pulsed power technology options and concluded that the requirement is beyond the state of the art for fast kicker technology. However, a near perfect solution is possible. We proposed several options in the conceptual design for the best achievable technical solution. In this paper, we present the technology overview, design comparisons, and the areas requiring advanced research and development effort.
Keywords :
proton accelerators; pulse generators; pulsed power technology; research and development; Brookhaven researchers; DeeMe experiment; US-Japan collaboration; advanced research and development; conceptual design; current 8 kA to 10 kA; frequency 25 Hz; high-current high-power fast kicker system; high-current high-voltage high-power generators; high-energy physics experiment; high-inductance magnetic load; kicker magnets; large-aperture high-inductance kicker magnets; low-impedance transmission lines; multiGVA high-deflection strength fast kicker system; passing beam deflection; pulse floor ripple tolerance; pulse repetition rate; pulsed power technology; technology overview; time 300 ns to 400 ns; Impedance; Magnetic circuits; Magnetic cores; Magnetic resonance imaging; Magnetomechanical effects; Modulation; Power cables;
Conference_Titel :
Pulsed Power Conference (PPC), 2013 19th IEEE
Conference_Location :
San Francisco, CA
DOI :
10.1109/PPC.2013.6627450