Title of article :
A bounce-averaged ion Fokker–Planck code for Penning fusion devices Original Research Article
Author/Authors :
L. Chac?n، نويسنده , , D.C. Barnes، نويسنده , , D.A. Knoll، نويسنده , , G.H. Miley، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2001
Pages :
26
From page :
183
To page :
208
Abstract :
A bounce-averaged Fokker–Planck code (BAFP) has been developed and tested. BAFP implements a multi-dimensional, energy-conservative, time-implicit solution of the Fokker–Planck equation in two velocity and one spatial dimensions. A Jacobian-free, Newton–Krylov solver efficiently inverts the time-implicit equations. Bounce averaging removes the fast time scale for motion of trapped ions, so low-collisionality ion systems can effectively be treated. BAFP has been applied to ion dynamics in virtual-cathode spherical inertial electrostatic (IEC) fusion devices, which employ a spherical cloud of electrons to create a kV electrostatic well to confine and spherically focus ions. Here, Penning-type IEC devices are studied. Steady-state ion distribution functions obtained with BAFP in operating limits of interest are presented, and show that a variety of steady-state equilibriums are possible in these systems.
Keywords :
Inertial electrostatic confinement , Penning traps , Bounce-average , Fokker–Planck , Kinetic simulation , Non-neutral plasmas
Journal title :
Computer Physics Communications
Serial Year :
2001
Journal title :
Computer Physics Communications
Record number :
1135536
Link To Document :
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