A HaloSat Analysis of the Cygnus Superbubble
arXiv:2101.04278 · doi:10.3847/1538-4357/abc41b
Abstract
The Cygnus Superbubble (CSB) is a region of soft X-ray emission approximately 13 degrees wide in the direction of the local spiral arm. Such a large region might be the result of strong stellar winds and supernovae from nearby stellar nurseries, or it could be the result of a single event - a hypernova. HaloSat observed 4 non-overlapping 10 degree diameter fields in the CSB region over the 0.4-7 keV band. The CSB absorption and temperature was found to be consistent over all 4 fields, with a weighted average of 6.1x10^21 cm^-2 and 0.190 keV, respectively. These observations suggest that the CSB is a cohesive object with a singular origin. The total thermal energy for the CSB is estimated at 4x10^52 erg, based upon a shell-like physical model of the CSB. Absorption and distance estimates to Cyg OB associations are examined. The CSB absorption is found to be most consistent with the absorption seen in Cyg OB1, implying that the CSB lies at a similar distance of 1.1-1.4 kpc.
14 pages. 6 figures
References in corpus (11)
- Array Programming with NumPy
- The Gaia mission
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- The Chandra COSMOS legacy survey: Energy Spectrum of the Cosmic X-ray Background and constraints on undetected populations
- The Structure of the Local Hot Bubble
- A disk-dominated and clumpy circumgalactic medium of the Milky Way seen in X-ray emission
- Spectral variability in Cygnus X-3
- HaloSat -- A CubeSat to Study the Hot Galactic Halo
- Disentangling the spatial substructure of Cygnus OB2 from Gaia DR2
- Photoionization Emission Models for the Cyg X-3 X-ray Spectrum
- The Enigma of the Open Cluster M29 (NGC 6913) Solved