Charge-exchange emission and cold clumps in multiphase galactic outflows

Author:

Wu Kinwah1ORCID,Li Kaye Jiale12ORCID,Owen Ellis R1ORCID,Ji Li34,Zhang Shuinai34,Branduardi-Raymont Graziella1

Affiliation:

1. Mullard Space Science Laboratory, University College London, Holmbury St Mary, Surrey RH5 6NT, UK

2. Department of Physics, Chinese University of Hong Kong, Sha Tin, NT, Hong Kong SAR, China

3. Purple Mountain Observatory, Chinese Academy of Sciences, 8 Yuanhua Road, Nanjing 210034, China

4. Key Laboratory of Dark Matter and Space Astronomy, Chinese Academy of Sciences, Nanjing 210034, China

Abstract

ABSTRACTLarge-scale outflows from starburst galaxies are multiphase, multicomponent fluids. Charge-exchange lines that originate from the interfacing surface between the neutral and ionized components are a useful diagnostic of the cold dense structures in the galactic outflow. From the charge-exchange lines observed in the nearby starburst galaxy M82, we conduct surface-to-volume analyses and deduce that the cold dense clumps in its galactic outflow have flattened shapes, resembling a hamburger or a pancake morphology rather than elongated shapes. The observed filamentary H α features are therefore not prime charge-exchange line emitters. They are stripped material torn from the slow-moving dense clumps by the faster moving ionized fluid, which are subsequently warmed and stretched into elongated shapes. Our findings are consistent with numerical simulations that have shown that cold dense clumps in galactic outflows can be compressed by ram pressure, and also progressively ablated and stripped before complete disintegration. We have shown that some clumps could survive their passage along a galactic outflow. These are advected into the circumgalactic environment, where their remnants would seed condensation of the circumgalactic medium to form new clumps. The infall of these new clumps back into the galaxy and their subsequent re-entrainment into the galactic outflow form a loop process of galactic material recycling.

Funder

University College London

Chinese University of Hong Kong

Science and Technology Facilities Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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