English

Acceleration of X-ray Emitting Electrons in the Crab Nebula

High Energy Astrophysical Phenomena 2018-08-08 v2

Abstract

We study particle acceleration at the termination shock of a striped pulsar wind by integrating trajectories in a prescribed model of the magnetic field and flow pattern. Drift motion on the shock surface maintains either electrons or positrons on "Speiser" orbits in a ring-shaped region close to the equatorial plane of the pulsar, enabling them to be accelerated to very high energy by the first-order Fermi mechanism. A power-law spectrum results: dNe/dγγαedN_{\rm e}/d\gamma\propto\gamma^{\alpha_{\rm e}}, where αe\alpha_{\rm e} lies in the range 1.8-1.8 to 2.4-2.4 and depends on the downstream turbulence level. For sufficiently strong turbulence, we find αe2.2\alpha_{\rm e} \simeq -2.2, and both the photon index and the flux of 11001-100 keV X-rays from the Crab Nebula, as measured by NuSTAR, can be reproduced. The particle spectrum hardens to αe1.8\alpha_{\rm e} \simeq -1.8 at lower turbulence levels, which may explain the hard photon index observed by the Chandra X-ray Observatory in the central regions of the Nebula.

Keywords

Cite

@article{arxiv.1804.05056,
  title  = {Acceleration of X-ray Emitting Electrons in the Crab Nebula},
  author = {Gwenael Giacinti and John G. Kirk},
  journal= {arXiv preprint arXiv:1804.05056},
  year   = {2018}
}

Comments

14 pages, 8 figures, 2 tables. Accepted for publication in The Astrophysical Journal