English

Noise storm continua: power estimates for electron acceleration

Astrophysics 2009-11-10 v1

Abstract

We use a generic stochastic acceleration formalism to examine the power LinL_{\rm in} (ergs1{\rm erg s^{-1}}) input to nonthermal electrons that cause noise storm continuum emission. The analytical approach includes the derivation of the Green's function for a general second-order Fermi process, and its application to obtain the particular solution for the nonthermal electron distribution resulting from the acceleration of a Maxwellian source in the corona. We compare LinL_{\rm in} with the power LoutL_{\rm out} observed in noise storm radiation. Using typical values for the various parameters, we find that Lin102326L_{\rm in} \sim 10^{23-26} ergs1{\rm erg s^{-1}}, yielding an efficiency estimate ηLout/Lin\eta \equiv L_{\rm out}/L_{\rm in} in the range 1010\lsimη\lsim10610^{-10} \lsim \eta \lsim 10^{-6} for this nonthermal acceleration/radiation process. These results reflect the efficiency of the overall process, starting from electron acceleration and culminating in the observed noise storm emission.

Cite

@article{arxiv.astro-ph/0408461,
  title  = {Noise storm continua: power estimates for electron acceleration},
  author = {Prasad Subramanian and Peter A. Becker},
  journal= {arXiv preprint arXiv:astro-ph/0408461},
  year   = {2009}
}

Comments

Accepted for publication in Solar Physics

R2 v1 2026-07-22T08:41:46.239Z