Related papers: Dispersion relation for electromagnetic wave propa…
A dispersion relation for electromagnetic wave propagation in a strongly magnetized cold plasma is deduced, taking photon-photon scattering into account. It is shown that the combined plasma and quantum electrodynamic effect is important…
This paper has been withdrawn by the author(s), due to double submission. You can find it under: physics/0208019
This paper has been withdrawn because it is a duplicate of [hep-ph/0609266].
This paper has been withdrawn by the author because similar published work on the topic was overlooked. See S. Deser and A. Waldron, Nucl. Phys. B 631, 369-387 (2002).
The paper was withdrawn because of its significant overlap with a paper appeared recently.
This paper has been withdrawn.
This paper has been withdrawn.
This paper has been withdrawn by the author due to the paper does not belong to Condensed Matter field.
This paper has been withdrawn by the author due to similarity to Author's other paper
The paper is withdrawn and will be replaced at a later time by a significantly revised and extended version.
The dispersion relation of an electromagnetic wave in an unmagnetized neutral plasma is well known to be w^2=wp^2+(ck)^2. A modified dispersion relation is presented taking into account the ion restoring force in the transverse direction.
We consider a model for the propagation and absorption of electromagnetic waves (in the time-harmonic regime) in a magnetised plasma. We present a rigorous derivation of the model and several boundary conditions modelling wave injection…
The paper has been withdrawn.
This paper has been withdrawn due to copyright reasons.
This paper has been withdrawn by the author.
This paper has been withdrawn by the author. It will be posted on astro-ph once the proceedings of the 363rd Heraeus Seminar on Neutron Stars and Pulsars are ready.
The problem of radio wave reflection from an optically thick plane monotonous layer of magnetized plasma is considered at present work. The plasma electron density irregularities are described by spatial spectrum of an arbitrary form. The…
A first-principle study of diffusion in a strongly coupled one-component plasma in a magnetic field B is presented. As in a weakly coupled plasma, the diffusion coefficient perpendicular to the field exhibits a Bohm-like 1/B-behavior in the…
This paper has been withdrawn by the author because the conclusions reached in it are incorrect.
This paper has been withdrawn because it is a duplicate of [math/0609208].