Development of FET-switched induction accelerator cells for heavy-ion fusion recirculators

The "recirculator", a recirculating heavy-ion induction accelerator, has been identified as a promising approach for an inertial fusion driver. One of the technical challenges to building a recirculator is the requirement for a modulator that can drive the induction accelerator cells at re...

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Hauptverfasser: Newton, M.A., Cravey, W.R., Hawkins, S.A., Kirbie, H.C., Ollis, C.W.
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:The "recirculator", a recirculating heavy-ion induction accelerator, has been identified as a promising approach for an inertial fusion driver. One of the technical challenges to building a recirculator is the requirement for a modulator that can drive the induction accelerator cells at repetition rates /spl ges/100 kHz with variable pulse width and pulse repetition rate capability. A high repetition rate modulator and cell is presently being developed for use on a proposed heavy-ion recirculator. The goal is to develop an array of field-effect transistors to switch 5 kV, 1 /spl mu/s pulses onto a Metglas induction core at pulse rates exceeding 100 kHz. Each transistor in the array is driven by a fiber-optic isolated gate signal that is powered by a dc/dc converter. The circuit architecture provides for core reset between pulses and produces bursts of pulses that are variable in pulse width and prf. The transistor switching array, energy storage capacitors, reset circuit and cell core are all combined into a single compact, low-impedance package. Progress of this development work is presented with supporting data.< >
DOI:10.1109/PAC.1993.308785