TY - JOUR
T1 - Transport coefficients for electrons in argon in crossed electric and magnetic rf fields
AU - Raspopović, Z. M.
AU - Dujko, S.
AU - Makabe, T.
AU - Petrović, Z. Lj
PY - 2005/5/1
Y1 - 2005/5/1
N2 - Monte Carlo simulations of electron transport have been performed in crossed electric and magnetic rf fields in argon. It was found that a magnetic field strongly affects electron transport, producing complex behaviour of the transport coefficients that cannot be predicted on the basis of dc field theory. In particular, it is important that a magnetic field, if it has sufficiently high amplitude, allows energy gain from the electric field only over a brief period of time, which leads to a pulse of directed motion and consequently to cyclotron oscillations being imprinted on the transport coefficients. Furthermore, this may lead to negative diffusion. The behaviour of drift velocities is also interesting, with a linear (sawtooth) dependence for the perpendicular drift velocity and bursts of drift for the longitudinal. Non-conservative effects are, on the other hand, reduced by the increasing magnetic field.
AB - Monte Carlo simulations of electron transport have been performed in crossed electric and magnetic rf fields in argon. It was found that a magnetic field strongly affects electron transport, producing complex behaviour of the transport coefficients that cannot be predicted on the basis of dc field theory. In particular, it is important that a magnetic field, if it has sufficiently high amplitude, allows energy gain from the electric field only over a brief period of time, which leads to a pulse of directed motion and consequently to cyclotron oscillations being imprinted on the transport coefficients. Furthermore, this may lead to negative diffusion. The behaviour of drift velocities is also interesting, with a linear (sawtooth) dependence for the perpendicular drift velocity and bursts of drift for the longitudinal. Non-conservative effects are, on the other hand, reduced by the increasing magnetic field.
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U2 - 10.1088/0963-0252/14/2/010
DO - 10.1088/0963-0252/14/2/010
M3 - Article
AN - SCOPUS:18744400557
SN - 0963-0252
VL - 14
SP - 293
EP - 300
JO - Plasma Sources Science and Technology
JF - Plasma Sources Science and Technology
IS - 2
ER -