Determination of the Sun's Offset from the Galactic Plane Using Pulsars
Abstract
We derive the Sun's offset from the local mean Galactic plane() using the observed distribution of young pulsars. Pulsar distances are obtained from measurements of annual parallax, HI absorption spectra or associations where available and otherwise from the observed pulsar dispersion and a model for the distribution of free electrons in the Galaxy. We fit the cumulative distribution function for a distribution function, representing an isothermal self-gravitating disk, with uncertainties being estimated using the bootstrap method. We take pulsars having characteristic age ~yr and located within 4.5~kpc of the Sun, omitting those within the local spiral arm and those significantly affected by the Galactic warp, and solve for and the scale height, , for different cutoffs in . We compute these quantities using just the independently determined distances, and these together with DM-based distances separately using the YMW16 and NE2001 Galactic electron density models. We find that an age cutoff at ~yr with YMW16 DM-distances gives the best results with a minimum uncertainty in and an asymptotically stable value for showing that, at this age and below, the observed pulsar -distribution is dominated by the dispersion in their birth locations. From this sample of 115 pulsars, we obtain 4.4~pc and 6.5~pc, similar to estimated scale heights for OB stars and open clusters. Consistent results are obtained using the independent-only distances and using the NE2001 model for the DM-based distances.
Keywords
Cite
@article{arxiv.1704.01272,
title = {Determination of the Sun's Offset from the Galactic Plane Using Pulsars},
author = {J. M. Yao and R. N. Manchester and N. Wang},
journal= {arXiv preprint arXiv:1704.01272},
year = {2017}
}
Comments
6 pages, 6 figures, accepted (MNRAS)