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A model for particle confinement in a toroidal plasma subject to strong radial electric fieldsThe approach adopted in the NASA Lewis Bumpy Torus experiment is to confine and heat a toroidal plasma by the simultaneous application of strong dc magnetic fields and electric fields. Strong radial electric fields (about 1 kV/cm) are imposed by biasing the plasma with up to 12 negative electrode rings which surround its minor circumference. The plasma containment is consistent with a balance of two processes: a radial infusion of ions in those sectors not containing electrode rings, resulting from the radially inward electric fields; and ion losses to the electrode rings, each of which acts as a sink and draws ions out the plasma in the manner of a Langmuir probe in the ion saturation regime. The highest density on axis which has been observed so far in this steady-state plasma is 6.2 trillion particles per cu cm, for which the particle containment time is 2.5 msec. The deuterium ion kinetic temperature for these conditions was in the range of 360 to 520 eV.
Document ID
19780040982
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Roth, J. R.
(NASA Lewis Research Center Cleveland, Ohio, United States)
Date Acquired
August 9, 2013
Publication Date
November 1, 1977
Subject Category
Plasma Physics
Meeting Information
Meeting: Annual Meeting
Location: Atlanta, GA
Start Date: November 7, 1977
End Date: November 11, 1977
Sponsors: American Physical Society
Accession Number
78A24891
Distribution Limits
Public
Copyright
Other

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