Evidence for a Fast Soft X-ray Wind in M82 from XMM-RGS
Abstract
Starburst wind models predict that metals and energy are primarily carried out of the disk by hot gas ( K), but the low energy resolution of X-ray CCD observations results in large uncertainties on the mass and energy loading. Here, we present evidence for a fast soft X-ray wind from the prototypical starburst galaxy M82 using deep archival observations from the Reflection Grating Spectrometer on XMM-Newton. After characterizing the complex line-spread function for the spatially extended outflow (), we perform emission-line fitting to measure the velocity dispersion, , from OVIII (0.65, 0.77 keV), NeX (1.02 keV), and MgXII (1.47 keV). For the K gas, OVIII yields a velocity dispersion of km s, implying a wind speed that is significantly above the escape velocity ( km s). NeX ( km s) and MgXII ( km s) show less velocity broadening than OVIII, hinting at a lower wind speed or smaller opening angle on the more compact spatial scales traced by the K gas. Alternatively, these higher energy emission lines may be dominated by shock-heated gas in the interstellar medium. Future synthesis of these measurements with Performance Verification observations of the keV wind in M82 from the Resolve microcalorimeter on the X-ray Imaging and Spectroscopy Mission will inform the phase structure and energy budget of the hot starburst wind.
Cite
@article{arxiv.2408.15327,
title = {Evidence for a Fast Soft X-ray Wind in M82 from XMM-RGS},
author = {Erin Boettcher and Edmund Hodges-Kluck},
journal= {arXiv preprint arXiv:2408.15327},
year = {2024}
}
Comments
Accepted for publication in ApJ. 17 pages, 8 figures, 3 tables