Temperature and Metallicity Gradients in the Hot Gas Outflows of M82
arXiv:2006.08623 · doi:10.3847/1538-4357/abc010
Abstract
We utilize deep Chandra X-ray Observatory imaging and spectra of M82, the prototype of a starbursting galaxy with a multiphase wind, to map the hot plasma properties along the minor axis of the galaxy. We extract spectra from 11 regions up to 2.5 kpc from the starbursting midplane and model the data as a multi-temperature, optically thin thermal plasma with contributions from a non-thermal (power-law) component and from charge exchange (CX). We examine the gradients in best-fit parameters, including the intrinsic column density, plasma temperature, metal abundances, and number density of the hot gas as a function of distance from the M82 nucleus. We find that the temperatures and number densities of the warm-hot and hot plasma peak at the starbursting ridge and decreases along the minor axis. The temperature and density profiles are inconsistent with spherical adiabatic expansion of a super-heated wind and suggest mass loading and mixing of the hot phase with colder material. Non-thermal emission is detected in all of the regions considered, and CX comprises 8-25% of the total absorption-corrected, broad-band (0.5-7 keV) X-ray flux. We show that the abundances of O, Ne, Mg, and Fe are roughly constant across the regions considered, while Si and S peak within 500 pc of the central starburst. These findings support a direct connection between the M82 superwind and the warm-hot, metal-rich circumgalactic medium (CGM).
15 pages, 8 figures, ApJ in press
References in corpus (13)
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- An H-alpha Imaging Survey of Galaxies in the Local 11 Mpc Volume
- The Launching of Cold Clouds by Galaxy Outflows I: Hydrodynamic Interactions with Radiative Cooling
- The COS-Halos Survey: Origins of the Highly Ionized Circumgalactic Medium of Star-Forming Galaxies
- Dynamics of Dusty Radiation Pressure Driven Shells and Clouds: Fast Outflows from Galaxies, Star Clusters, Massive Stars, and AGN
- Iron line and diffuse hard X-ray emission from the starburst galaxy M82
- The Physical Nature of Starburst-Driven Galactic Outflows
- Extended Mid-Infrared Aromatic Feature Emission in M 82
- HST/STIS Spectroscopy of Five Super Star Clusters in the Starburst Galaxy M82
- Gone With the Wind: Where is the Missing Stellar Wind Energy from Massive Star Clusters?
- A deep X-ray observation of M82 with XMM-Newton
- HST/STIS spectroscopy of the environment in the starburst core of M82
- Spectral Modeling of the Charge-Exchange X-ray Emission from M82
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