An entropy scheme for the Fokker-Planck collision operator of plasma kinetic theory

1994 ◽  
Vol 68 (2) ◽  
pp. 239-262 ◽  
Author(s):  
Pierre Degond ◽  
Brigitte Lucquin-Desreux
Author(s):  
Kashif Chaudhary ◽  
Auwal Mustapha Imam ◽  
Syed Zuhaib Haider Rizvi ◽  
Jalil Ali

2014 ◽  
Author(s):  
A. R. Méndez ◽  
G. Chacón-Acosta ◽  
A. L. García-Perciante

2018 ◽  
Vol 84 (6) ◽  
Author(s):  
L. Hesslow ◽  
O. Embréus ◽  
M. Hoppe ◽  
T. C. DuBois ◽  
G. Papp ◽  
...  

Accurate modelling of the interaction between fast electrons and partially ionized atoms is important for evaluating tokamak disruption mitigation schemes based on material injection. This requires accounting for the effect of screening of the impurity nuclei by the cloud of bound electrons. In this paper, we generalize the Fokker–Planck operator in a fully ionized plasma by accounting for the effect of screening. We detail the derivation of this generalized operator, and calculate the effective ion length scales, needed in the components of the collision operator, for a number of ion species commonly appearing in fusion experiments. We show that for high electric fields, the secondary runaway growth rate can be substantially larger than in a fully ionized plasma with the same effective charge, although the growth rate is significantly reduced at near-critical electric fields. Furthermore, by comparison with the Boltzmann collision operator, we show that the Fokker–Planck formalism is accurate even for large impurity content.


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