Measurement of core velocity fluctuations and the dynamo in a reversed-field pinch
Author(s) -
D. J. Den Hartog,
B. E. Chapman,
D. Craig,
G. Fiksel,
P. W. Fontana,
S. C. Prager,
J. S. Sarff
Publication year - 1999
Publication title -
physics of plasmas
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.75
H-Index - 160
eISSN - 1089-7674
pISSN - 1070-664X
DOI - 10.1063/1.873439
Subject(s) - physics , reversed field pinch , magnetohydrodynamics , dynamo , magnetic field , pinch , plasma , faraday effect , flow velocity , dynamo theory , computational physics , flow (mathematics) , mechanics , quantum mechanics , nuclear physics
Plasma flow velocity fluctuations have been directly measured in the high temperature magnetically confined plasma in the Madison Symmetric Torus (MST) Reversed-Field Pinch (RFP). These measurements show that the flow velocity fluctuations are correlated with magnetic field fluctuations. This initial measurement is subject to limitations of spatial localization and other uncertainties, but is evidence for sustainment of the RFP magnetic field configuration by the magnetohydrodynamic (MHD) dynamo. Both the flow velocity and magnetic field fluctuations are the result of global resistive MHD modes of helicity m = 1, n = 5--10 in the core of MST. Chord-averaged flow velocity fluctuations are measured in the core of MST by recording the Doppler shift of impurity line emission with a specialized high resolution and throughput grating spectrometer. Magnetic field fluctuations are recorded with a large array of small edge pickup coils, which allows spectral decomposition into discrete modes and subsequent correlation with the velocity fluctuation data.
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