English

Flares in the Crab Nebula Driven by Untwisting Magnetic Fields

High Energy Astrophysical Phenomena 2015-06-04 v1

Abstract

The recent discovery of PeV electrons from the Crab nebula, produced on rapid time scales of one day or less with a sharply peaked gamma-ray spectrum without hard X-rays, challenges traditional models of diffusive shock acceleration followed by synchrotron radiation. Here we outline an accleration model involving a DC electric field parallel to the magnetic field in a twisted toroidal field around the pulsar. Sudden developments of resistivity in localized regions of the twisted field are thought to drive the particle acceleration, up to PeV energies, resulting in flares. This model can reproduce the observed time scales of T1T \approx 1 day, the peak photon energies of UΦ,rr1U_{\Phi,rr} \approx 1 MeV, maximum electron energies of Ue,rr1U_{e,rr} \approx 1 PeV, and luminosities of L1036L \approx 10^{36} erg s1^{-1}.

Keywords

Cite

@article{arxiv.1205.0039,
  title  = {Flares in the Crab Nebula Driven by Untwisting Magnetic Fields},
  author = {Peter Sturrock and Markus J. Aschwanden},
  journal= {arXiv preprint arXiv:1205.0039},
  year   = {2015}
}

Comments

Astrophys. J. Letters, (accepted Apr 30, 2012; in press) - 1 figure