Effect of ion collisions on TM models in cylindrical wave guide filled with hot plasma

Astronomy and Astrophysics – Astrophysics

Scientific paper

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Collisional Plasmas, Ionic Collisions, Plasma Temperature, Plasmaguides, Ion Temperature, Wave Propagation

Scientific paper

For a cylindrical waveguide filled with hot collisional and uniaxially magnetized plasma, an expression for the damping coefficients is derived and discussed numerically. When the plasma frequency is high and the ion collision frequency low, the TM modes are observed to undergo very high damping. For low values of the plasma frequency, however, the damping is low. It is also found that the damping increases with the ion temperature. The study extends the work of Phalswal and Varma (1979) for ion collisions. The linearized Boltzmann kinetic equation for the TM model is solved in terms of cylindrical coordinates with the relevant Maxwell equations by properly applying the Fourier and Laplace transforms.

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