Charge exchange in the ultraviolet: implication for interacting clouds in the core of NGC 1275
arXiv:1703.01151 · doi:10.1051/0004-6361/201730596
Abstract
Charge exchange emission is known to provide a key diagnostic to the interface between hot and cold matter in many astrophysical environments. Most of the recent charge exchange studies focus on its emission in the X-ray band, but few on the UV part, although the latter can also provide a powerful probe of the charge exchange process. An atomic calculation, as well as an application to observed data, are presented to explore and describe the potential use of the UV data for the study of cosmic charge exchange. Using the newest charge exchange model in the SPEX code v3.03, we re-analyze an archival Hubble STIS data of the central region of NGC 1275. The NGC 1275 spectrum shows hints for three possible weak lines at about 1223.6~Å, 1242.4~Å, and 1244.0~Å, each with a significance of about . The putative features are best explained by charge exchange between highly ionized hydrogen, neon, and sulfur with neutral matter. The wavelengths of the charge exchange lines are found robustly with uncertainties ~Å. The possible charge exchange emission shows a line-of-sight velocity offset of about km s with respect to the NGC 1275 nucleus, which resembles one of the Ly absorbers reported in Baum et al. (2005). This indicates that the charge exchange lines might be emitted as the same position of the absorber, which could be ascribed to outflowing gas from the nucleus.
accepted for publication in A&A
References in corpus (8)
- The Quiescent Intracluster Medium in the Core of the Perseus Cluster
- HST-COS Observations of AGN. II. Extended Survey of Ultraviolet Composite Spectra from 159 Active Galactic Nuclei
- Hitomi constraints on the 3.5 keV line in the Perseus galaxy cluster
- Systematic comparison of photoionised plasma codes with application to spectroscopic studies of AGN in X-rays
- Resolving the Origin of the Diffuse Soft X-ray Background
- Laboratory measurements compellingly support charge-exchange mechanism for the 'dark matter' 3.5 keV X-ray line
- A new paradigm for the X-ray emission of O stars from XMM-Newton observations of the O9.7 supergiant zeta Orionis
- Suzaku and XMM-Newton Observations of the North Polar Spur: Charge Exchange or ISM Absorption?