Nonlinear Charge and Current Neutralization of an Ion Beam Pulse in a Pre-formed Plasma

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The propagation of a high-current finite-length ion beam in a cold pre-formed plasma is investigated. The outcome of the calculation is the quantitative prediction of the degree of charge and current neutralization of the ion beam pulse by the background plasma. The electric magnetic fields generated by the ion beam are studied analytically for the nonlinear case where the plasma density is comparable in size with the beam density. Particle-in-cell simulations and fluid calculations of current and charge neutralization have been performed for parameters relevant to heavy ion fusion assuming long, dense beams with el >> V(subscript b)/omega(subscript b), where … continued below

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804 Kilobytes pages

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Kaganovich, Igor D.; Shvets, Gennady; Startsev, Edward & Davidson, Ronald C. January 30, 2001.

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This report is part of the collection entitled: Office of Scientific & Technical Information Technical Reports and was provided by the UNT Libraries Government Documents Department to the UNT Digital Library, a digital repository hosted by the UNT Libraries. It has been viewed 108 times, with 5 in the last month. More information about this report can be viewed below.

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Description

The propagation of a high-current finite-length ion beam in a cold pre-formed plasma is investigated. The outcome of the calculation is the quantitative prediction of the degree of charge and current neutralization of the ion beam pulse by the background plasma. The electric magnetic fields generated by the ion beam are studied analytically for the nonlinear case where the plasma density is comparable in size with the beam density. Particle-in-cell simulations and fluid calculations of current and charge neutralization have been performed for parameters relevant to heavy ion fusion assuming long, dense beams with el >> V(subscript b)/omega(subscript b), where V(subscript b) is the beam velocity and omega subscript b is the electron plasma frequency evaluated with the ion beam density. An important conclusion is that for long, nonrelativistic ion beams, charge neutralization is, for all practical purposes, complete even for very tenuous background plasmas. As a result, the self-magnetic force dominates the electric force and the beam ions are always pinched during beam propagation in a background plasma.

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804 Kilobytes pages

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INIS; OSTI as DE00775538

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  • Other Information: PBD: 30 Jan 2001

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Office of Scientific & Technical Information Technical Reports

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  • January 30, 2001

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  • Sept. 29, 2015, 5:31 a.m.

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  • April 15, 2016, 9:47 p.m.

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Kaganovich, Igor D.; Shvets, Gennady; Startsev, Edward & Davidson, Ronald C. Nonlinear Charge and Current Neutralization of an Ion Beam Pulse in a Pre-formed Plasma, report, January 30, 2001; Princeton, New Jersey. (https://digital.library.unt.edu/ark:/67531/metadc719491/: accessed July 16, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.

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