arXiv · 2305.04948
Discovery of Radial Spectral Hardening in the Hot Bubble of Planetary Nebula BD+30 3639 with Median Energy Imaging
Abstract
We introduce a new imaging analysis technique to study the spatial distribution of the X-ray emission from the hot bubble of planetary nebula BD+30 3639. Hot bubble emission is typically photon-starved, thus limiting the methods for spatial-spectral analysis, however, this new technique uses the statistics of photon energies across the nebula to identify spatial variations. Using the median energy value of the X-ray photons, we identified a rise in median energy values towards the projected edge of the nebula, which we refer to as radial spectral hardening. We explored the origin of this radial spectral hardening with X-ray spectral analysis of distinct regions of high- and low-median energy values. Given that the hot bubble is embedded within a young, dense, planetary nebula, we argue that the radial spectral hardening is due to an increased column density at the projected nebular edge. Median energy imaging provides a promising new methodology for exploring the spatial variations in faint extended X-ray sources.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Rodolfo Montez Jr. 2023-05-08. Discovery of Radial Spectral Hardening in the Hot Bubble of Planetary Nebula BD+30 3639 with Median Energy Imaging. https://arxiv.org/abs/2305.04948
Cite the original work for its findings. Save a collection to share your selection of sources.