Rings and Jets around PSR J2021+3651: the `Dragonfly Nebula'
Abstract
We describe recent Chandra ACIS observations of the Vela-like pulsar PSR J2021+3651 and its pulsar wind nebula (PWN). This `Dragonfly Nebula' displays an axisymmetric morphology, with bright inner jets, a double-ridged inner nebula, and a ~30" polar jet. The PWN is embedded in faint diffuse emission: a bow shock-like structure with standoff ~1' brackets the pulsar to the east and emission trails off westward for 3-4'. Thermal (kT=0.16 +/-0.02 keV) and power law emission are detected from the pulsar. The nebular X-rays show spectral steepening from Gamma=1.5 in the equatorial torus to Gamma=1.9 in the outer nebula, suggesting synchrotron burn-off. A fit to the `Dragonfly' structure suggests a large (86 +/-1 degree) inclination with a double equatorial torus. Vela is currently the only other PWN showing such double structure. The >12 kpc distance implied by the pulsar dispersion measure is not supported by the X-ray data; spectral, scale and efficiency arguments suggest a more modest 3-4 kpc.
Cite
@article{arxiv.0802.3707,
title = {Rings and Jets around PSR J2021+3651: the `Dragonfly Nebula'},
author = {Adam Van Etten and Roger W. Romani and C. -Y. Ng},
journal= {arXiv preprint arXiv:0802.3707},
year = {2009}
}
Comments
22 pages, 5 figures, 3 tables, Accepted to ApJ