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research article

Full-field drift Hamiltonian particle orbits in axisymmetric tokamak geometry

Cooper, W. A.  
•
Cooper, G. A.
•
Graves, J. P.
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2011
Physics of Plasmas

A Hamiltonian/Lagrangian theory to describe guiding center orbit drift motion that is canonical in Boozer magnetic coordinates is developed to include full electrostatic and electromagnetic perturbed fields in axisymmetric tokamak geometry. Furthermore, the radial component of the equilibrium magnetic field in the covariant representation is retained and the background equilibrium state extends to anisotropic plasma pressure conditions. A gauge transformation on the perturbed vector potential is imposed to guarantee canonical structure in the Boozer frame. Perturbed field nonlinear wave-wave interactions affect only the evolution of the guiding center particle parallel gyroradius. The evolution of the particle coordinate positions retains only linear wave-particle interactions. For particle motion in magnetohydrodynamic (MHD) instability structures, the electrostatic potential is linked mainly to the binormal component of the perturbed displacement vector when finite $delta extbf{A_{perp}}$ components are included.

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Type
research article
DOI
10.1063/1.3579398
Web of Science ID

WOS:000292209500038

Author(s)
Cooper, W. A.  
Cooper, G. A.
Graves, J. P.
Isaev, M. Yu
Date Issued

2011

Publisher

American Institute of Physics (AIP)

Published in
Physics of Plasmas
Volume

18

Issue

5

Article Number

052507

Subjects

Hamiltonian

•

Lagrangian

•

guiding centre orbit

•

Boozer coordinates

•

canonical

•

gauge

URL

URL

http://pop.aip.org/
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CRPP  
SPC  
Available on Infoscience
May 30, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/67982
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