Powerful H2 Line Cooling in Stephan's Quintet II. Group-wide Gas and Shock Modeling of the Warm H2 and a Comparison with [CII]157.7um Emission and Kinematics
arXiv:1701.03226 · doi:10.3847/1538-4357/836/1/76
Abstract
We map for the first time the two-dimensional H_2 excitation of warm intergalactic gas in Stephan's Quintet on group-wide (50 x 35 kpc^2) scales to quantify the temperature, mass and warm-H_2 mass fraction as a function of position using Spitzer. Molecular gas temperatures are seen to rise (to T > 700K) and the slope of the power--law density-temperature relation flattens along the main ridge of the filament, defining the region of maximum heating. We also performed MHD modeling of the excitation properties of the warm gas, to map the velocity structure and energy deposition rate of slow and fast molecular shocks. Slow magnetic shocks were required to explain the power radiated from the lowest--lying rotational states of H_2, and strongly support the idea that energy cascades down to small scales and low velocities from the fast collision of NGC 7318b with group-wide gas. The highest levels of heating of the warm H_2 is strongly correlated with the large-scale stirring of the medium as measured by [CII] spectroscopy with Herschel. H_2 is also seen associated with a separate bridge which extends towards the Seyfert nucleus in NGC 7319, both from Spitzer and CARMA CO observations. This opens up the possibility that both galaxy collisions and AGN outflows can turbulently heat gas on large-scales in compact groups. The observations provide a laboratory for studying the effects of turbulent energy dissipation on group-wide scales that may provide clues about the heating and cooling of gas at high-z in early galaxy and protogalaxy formation.
Accepted for publication in ApJ Jan 10 2017
References in corpus (16)
- Spectral Mapping Reconstruction of Extended Sources
- Powerful High Velocity-Dispersion Molecular Hydrogen Associated with an Intergalactic Shock Wave in Stephan's Quintet
- Low velocity shocks: signatures of turbulent dissipation in diffuse irradiated gas
- Mid-Infrared Properties of Luminous Infrared Galaxies II: Probing the Dust and Gas Physics of the GOALS Sample
- A Spitzer Infrared Spectrograph Survey of Warm Molecular Hydrogen in Ultra-luminous Infrared Galaxies
- Shocked Molecular Hydrogen in the 3C 326 Radio Galaxy System
- Mapping warm molecular hydrogen with Spitzer's Infrared Array Camera (IRAC)
- Lighting the dark molecular gas: H as a direct tracer
- A Large Mass of H2 in the Brightest Cluster Galaxy in Zwicky 3146
- A complete census of silicate features in the mid-infrared spectra of active galaxies
- Jet-ISM Interaction in the Radio Galaxy 3C293: Jet-driven Shocks Heat ISM to Power X-ray and Molecular H2 emission
- Strong Far-IR Cooling Lines, Peculiar CO Kinematics and Possible Star Formation Suppression in Hickson Compact Group 57
- Herschel observations of Hickson compact groups of galaxies: Unveiling the properties of cold dust
- Jet-Shocked H2 and CO in the Anomalous Arms of Molecular Hydrogen Emission Galaxy NGC 4258
- A study of the ionized gas in Stephan's Quintet from integral field spectroscopy observations
- On the Anomalous Silicate Emission Features of AGNs: A Possible Interpretation Based on Porous Dust
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- Kinematics and Star Formation of High-Redshift Hot Dust-Obscured Quasars as Seen by ALMA
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- Star Formation and Molecular Gas Diagnostics with Mid- and Far-Infrared Emission
- Multi-phase gas interactions on subarcsec scales in the shocked IGM of Stephan's Quintet with JWST and ALMA
- The Interaction between AGN and Starburst Activity in the Circumnuclear Region of NGC 7469 as Viewed with JWST
- GOALS-JWST: Pulling Back the Curtain on the AGN and Star Formation in VV 114
- The role of molecular gas in galaxy transition in compact groups
- Self-generated ultraviolet radiation in molecular shock waves II. CH+ and the interpretation of emission from shock ensembles
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- Extremely broad Lyman-alpha line emission from the molecular intra-group medium in Stephan's Quintet: evidence for a turbulent cascade in a highly clumpy multi-phase medium?
- Low star formation efficiency due to turbulent adiabatic compression in the Taffy bridge
- WEAVE First Light Observations: Origin and Dynamics of the Shock Front in Stephan's Quintet
- The CO emission in the Taffy Galaxies (UGC 12914/5) at 60pc resolution-I: The battle for star formation in the turbulent Taffy Bridge
- The ALMA-CRISTAL survey: Extended [CII] emission in an interacting galaxy system at z ~ 5.5
- [CII] and CO Emission Along the Bar and Counter-Arms of NGC 7479
- Gas and stellar dynamics in Stephan's Quintet: Mapping the kinematics in a closely interacting compact galaxy group
- Environmental effects in Herschel observations of the ionized carbon content of star forming dwarf galaxies in the Virgo cluster
- Impact of AGN and nuclear star formation on the ISM turbulence of galaxies: Insights from JWST/MIRI spectroscopy
- Self-generated ultraviolet radiation in molecular shock waves I. Effects of Lyman , Lyman , and two-photon continuum
- Gas-Poor Hosts and Gas-Rich Companions of 3.5 Radio Active Galactic Nuclei: ALMA Insights into Jet Triggering and Feedback
- Jet-driven shocks and turbulence in radio-loud Active Galactic Nuclei observed with JWST MIRI/MRS