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Super Marx Generator for Thermonuclear Ignition

Published 11 Sep 2008 in physics.plasm-ph and physics.acc-ph | (0809.2071v1)

Abstract: In ongoing electric pulse power driven inertial confinement fusion experiments, Marx generators are connected in parallel with the target in the center of a ring of the Marx generators. There the currents, not the voltages add up. Instead of connecting a bank of Marx generator in parallel, one may connect them in series, adding up their voltages, not the currents. If, for example, fifty 20 MV Marx generators are connected in series, they would add up to a gigavolt. But to prevent breakdown, the adding up of the voltages in such a super-Marx generator must be fast. For this reason, it is proposed that each of the Marx generators charges up a fast discharge capacitor, with the thusly charged fast capacitors becoming the elements of a second stage super Marx generator. In a super Marx generator, the Marx generators also assume the role of the resistors in the original Marx circuit. With a voltage of 109 Volt and a discharge current of 107 Ampere, the generation of a 1016 Watt GeV proton beam becomes possible, which can ignite in liquid deuterium a thermonuclear micro-detonation.

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