The SAMI Galaxy Survey: Shocks and Outflows in a normal star-forming galaxy
I-Ting Ho, Lisa J. Kewley, Michael A. Dopita, Anne M. Medling, J. T., Allen, Joss Bland-Hawthorn, Jessica V. Bloom, Julia J. Bryant, Scott M., Croom, L. M. R. Fogarty, Michael Goodwin, Andy W. Green, Iraklis S., Konstantopoulos, Jon S. Lawrence, \'A.R. L\'opez-S\'anchez

TL;DR
This study uses integral field spectroscopy to analyze galactic outflows in a local star-forming galaxy, revealing shock excitation caused by starburst-driven outflows through spectral decomposition and modeling.
Contribution
It demonstrates the feasibility of using large spectroscopic surveys to identify and analyze galactic outflows and shocks in normal star-forming galaxies.
Findings
Galactic outflows cause shock excitation and affect gas properties.
Spectral decomposition reveals multiple kinematic components with distinct properties.
Models show outflows are likely driven by starburst activities, not active galactic nuclei.
Abstract
We demonstrate the feasibility and potential of using large integral field spectroscopic surveys to investigate the prevalence of galactic-scale outflows in the local Universe. Using integral field data from SAMI and the Wide Field Spectrograph, we study the nature of an isolated disk galaxy, SDSS J090005.05+000446.7 (z = 0.05386). In the integral field datasets, the galaxy presents skewed line profiles changing with position in the galaxy. The skewed line profiles are caused by different kinematic components overlapping in the line-of-sight direction. We perform spectral decomposition to separate the line profiles in each spatial pixel as combinations of (1) a narrow kinematic component consistent with HII regions, (2) a broad kinematic component consistent with shock excitation, and (3) an intermediate component consistent with shock excitation and photoionisation mixing. The three…
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