The Transition Zone in Balmer-Dominated Shocks
Abstract
We examine the structure of the post-shock region in supernova remnants (SNRs). The ``shock transition zone'' is set up by charge transfer and ionization events between atoms and ions, and has a width cm , where is the total pre-shock density (including both atoms and ions). For Balmer-dominated SNRs with shock velocity km s, the Rankine-Hugoniot conditions for ion velocity and temperature are obeyed instantly, leaving the full width at half-maximum (FWHM) of the broad H line versus relation intact. However, the spatial variation in the post-shock densities is relevant to the problem of Ly resonant scattering in young, core-collapse SNRs. Both two- (pre-shock atoms and ions) and three-component (pre-shock atoms, broad neutrals and ions) models are considered. We compute the spatial emissivities of the broad () and narrow () H lines; a calculation of these emissivities in SN 1006 is in general agreement with the computed ones of Raymond et al. (2007). The (dimensionless) spatial shift, , between the centroids of and is unique for a given shock velocity and , the pre-shock ion fraction. Measurements of can be used to constrain .
Keywords
Cite
@article{arxiv.0705.2619,
title = {The Transition Zone in Balmer-Dominated Shocks},
author = {Kevin Heng and Matthew van Adelsberg and Richard McCray and John C. Raymond},
journal= {arXiv preprint arXiv:0705.2619},
year = {2009}
}