Hamiltonian description of the topology of drift orbits of relativistic particles in a tokamak

被引:17
作者
deRover, M
Cardozo, NJL
Montvai, A
机构
[1] FOM-Inst. V. Plasmafysica Rijnhuizen, Association Euratom-FOM, 3402 BE Nieuwegein
关键词
D O I
10.1063/1.872066
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Using classical perturbation theory, a Hamiltonian description of the guiding center motion of relativistic electrons in a torus with an axially symmetric magnetic field is derived. The magnetic field itself generates concentric circular flux surfaces. This description enables us to assess the behavior of the drift orbits such that previously unknown details follow almost naturally due to the introduction of higher order terms in the description. The rotational transform of the orbit for a given particle is found to decrease when the particle energy increases and the radius of the particle orbit is almost constant during acceleration. As a consequence, the minor radius of a drift surface with a (fixed) rotational transform 1/q(D) is always smaller than the radius of the magnetic flux surface with q=q(D) from which the particle started with zero energy. At a critical energy, the drift surface has collapsed to a point in the poloidal cross section. Above this critical energy there is no particle orbit with the commensurate rotational transform 1/q(D). When the symmetry of the magnetic field is broken by harmonic perturbations with amplitudes that increase towards the plasma edge, the resonant magnetic surfaces and drift surfaces break up, and form chains of islands. The Hamiltonian description was set up in such away that it allows the computation of the width of the drift islands. (C) 1996 American Institute of Physics.
引用
收藏
页码:4468 / 4477
页数:10
相关论文
共 20 条
[1]   EVALUATION OF THE STRUCTURE OF ERGODIC FIELDS [J].
BOOZER, AH .
PHYSICS OF FLUIDS, 1983, 26 (05) :1288-1291
[2]   PARTICLE DIFFUSION IN TOKAMAKS WITH PARTIALLY DESTROYED MAGNETIC-SURFACES [J].
BOOZER, AH ;
WHITE, RB .
PHYSICAL REVIEW LETTERS, 1982, 49 (11) :786-789
[3]   DRIFT-SURFACE-ISLAND FORMATION AND PARTICLE DIFFUSION IN TOROIDAL PLASMA [J].
BRAMBILLA, M ;
LICHTENBERG, AJ .
NUCLEAR FUSION, 1973, 13 (04) :517-520
[4]   STOCHASTIC MAGNETIC-FIELD AND ENHANCED TRANSPORT [J].
BUSSAC, MN ;
ZUPPIROLI, L .
PHYSICS LETTERS A, 1992, 161 (04) :365-368
[5]   Motion of relativistic particles in axially symmetric and perturbed magnetic fields in a tokamak [J].
deRover, M ;
Cardozo, NJL ;
Montvai, A .
PHYSICS OF PLASMAS, 1996, 3 (12) :4478-4488
[6]   STOCHASTIC STABILITY OF A PLASMA TORUS [J].
ELSASSER, K ;
DUCHS, D ;
SACK, C .
PHYSICS LETTERS A, 1987, 120 (02) :57-63
[7]  
JASPERS RJE, 1995, THESIS TECHNICAL U E
[8]   RUNAWAY ELECTRONS IN TOROIDAL DISCHARGES [J].
KNOEPFEL, H ;
SPONG, DA .
NUCLEAR FUSION, 1979, 19 (06) :785-829
[9]  
Lichtenberg A., 1992, Regular and Chaotic Motion
[10]   DIFFERENTIAL FORMS AND CANONICAL VARIABLES FOR DRIFT MOTION IN TOROIDAL GEOMETRY [J].
LITTLEJOHN, RG .
PHYSICS OF FLUIDS, 1985, 28 (06) :2015-2016