Tokamak divertor maps

Author:

Punjabi Alkesh,Verma Arun,Boozer Allen

Abstract

A mapping method is developed to investigate the problem of determination and control of heat-deposition patterns on the plates of a tokamak divertor. The deposition pattern is largely determined by the magnetic field lines, which are mathematically equivalent to the trajectories of a single-degree-of-freedom time-dependent Hamiltonian system. Maps are natural tools to study the generic features of such systems. The general theory of maps is presented, and methods for incorporating various features of the magnetic field and particle motion in divertor tokamaks are given. Features of the magnetic field include the profile of the rotational transform, single- versus double-null divertor, reverse map, the effects of naturally occurring low M and N, and externally imposed high-M, high-N perturbations. Particle motion includes radial diffusion, pitch angle and energy scattering, and the electric sheath at the plate. The method is illustrated by calculating the stochastic broadening in a single- null divertor tokamak. Maps provide an efficient, economic and elegant method to study the problem of motion of plasma particles in the stochastic scrape-off layer.

Publisher

Cambridge University Press (CUP)

Subject

Condensed Matter Physics

Reference12 articles.

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2. Post D. E. et XXXVII al. (and other International contributors) 1991 ITER Physics. ITER Documentation Series no. 21. IAEA.

3. Regular and Stochastic Motion

4. Monte Carlo calculations for transport due to MHD modes

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