Using optical lines to study particle acceleration at supernova remnants
arXiv:1409.1112 · doi:10.1016/j.nuclphysbps.2014.10.006
Abstract
The shocks of several young supernova remnants (SNR) are often associated with very thin optical filaments dominated by Balmer emission resulting from charge-exchange and collisional excitation between neutral Hydrogen from the interstellar medium and shocked protons and electrons. Optical lines are a direct probe of the conditions at the shock, in particular the width of the narrow and broad components reflect the temperature upstream and downstream of the shock, respectively. When the shock accelerate efficiently non-thermal particles, the shock structure changes producing anomalous Balmer lines and it is possible to use their line shape and their spatial profile to check the efficiency of SNR shocks in accelerating cosmic rays. Here we illustrate the kinetic theory of shock acceleration in presence of neutrals with some applications to young SNRs. We show that in three cases (RCW 86, SNR 0509-67.5 and Tycho) anomalous Balmer lines can be explained assuming that a fraction of of the total shock kinetic energy is converted into not thermal particles, while in one single case, the northwestern part of SN 1006, there is no evidence of efficient acceleration.
9 pages, 5 figures; proceeding for the conference "Cosmic Ray origin - beyond the standard models", San Vito di Cadore, Italy, 16-22 March, 2014
References in corpus (5)
- A Physical Relationship Between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks
- First detection of VHE gamma-rays from SN 1006 by H.E.S.S
- Spatial Structure and Collisionless Electron Heating in Balmer-dominated Shocks
- Resolved shock structure of the Balmer-dominated filaments in Tycho's supernova remnant: Cosmic-ray precursor?
- Balmer-Dominated Shocks Revisited