English

Heating of solar chromosphere by electromagnetic wave absorption in a plasma slab model

Solar and Stellar Astrophysics 2011-06-10 v3 Plasma Physics

Abstract

The heating of solar chromospheric inter-network regions by means of the absorption of electromagnetic (EM) waves that originate from the photospheric blackbody radiation is studied in the framework of a plasma slab model. The absorption is provided by the electron-neutral collisions in which electrons oscillate in the EM wave field and electron-neutral collisions damp the EM wave. Given the uncertain nature of the collision cross-section due to the plasma micro-turbulence, it is shown that for plausible physical parameters, the heating flux produced by the absorption of EM waves in the chromosphere is between 204520 - 45 % of the chromospheric radiative loss flux requirement. It is also established that there is an optimal value for the collision cross-section, 5×10185 \times 10^{-18} m2^{2}, that produces the maximal heating flux of 1990 W m2^{-2}.

Keywords

Cite

@article{arxiv.1012.4655,
  title  = {Heating of solar chromosphere by electromagnetic wave absorption in a plasma slab model},
  author = {D. Tsiklauri and R. Pechhacker},
  journal= {arXiv preprint arXiv:1012.4655},
  year   = {2011}
}

Comments

Physics of Plasmas, in press, April 2011 issue (final printed version, typos in proofs corrected)