Dynamics and Shocks from H Emission of Nearby Galaxy Mergers
arXiv:1801.03981 · doi:10.1093/mnras/stz1331
Abstract
We examine the dynamical properties of interacting galaxies and the properties of shocked gas produced as a result of the interaction. We observed 22 galaxy mergers using the SparsePak IFU at Kitt Peak National Observatory (KPNO). The goal of the observations was to obtain the \ha\ velocity maps over the entire luminous parts of the galaxies including the faint tidal tails and to find extended shocks and outflows. Our sample consists of major and minor galaxy mergers with mass ratios . We fit multiple kinematic components to the \ha\ and \nii\ emission lines, develop an MCMC code to robustly estimate the error of fit parameters, and use the F-test to determine the best number of kinematic components for each fiber. We use \nii/\ha\ and velocity dispersion of components to separate star-forming (HII) regions from shocks. We use the kinematics of the \ha\ emission from HII regions and an automated modeling method to put the first-ever constraints on the encounter parameters of one of the observed systems. Besides, we roughly estimate the fraction of shocked \ha\ emission , , without taking extinction into account and examine the spatial distribution of shocks. We find that close galaxy pairs have, on average, a higher shock fraction than wide pairs, and coalesced mergers have the highest average . In addition, galaxy pairs with more equal mass ratio tend to have a higher . Combining the dynamical models from the literature and this work, we inspect trends between and dynamical encounter parameters. Our findings are generally consistent with shocks being produced either by the direct collision of the ISM or by the chain of events provoked by the tidal impulse during the first passage.
19 pages, 14 figures, Accepted for publication in MNRAS
References in corpus (17)
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- Galaxy Zoo 1 : Data Release of Morphological Classifications for nearly 900,000 galaxies
- The effect of galaxy mass ratio on merger--driven starbursts
- The stellar mass assembly of galaxies in the Illustris simulation: growth by mergers and the spatial distribution of accreted stars
- SDSS IV MaNGA - Spatially resolved diagnostic diagrams: A proof that many galaxies are LIERs
- Galaxy Mergers Drive Shocks: an Integral Field Study of GOALS galaxies
- The Role of Galactic Winds on Molecular Gas Emission from Galaxy Mergers
- Starburst-AGN mixing: II. Optically-selected active galaxies
- Evidence of ongoing radial migration in NGC 6754: Azimuthal variations of the gas properties
- Identikit 1: A Modeling Tool for Interacting Disk Galaxies
- The Mice at play in the CALIFA survey: A case study of a gas-rich major merger between first passage and coalescence
- Galaxy Zoo: Mergers - Dynamical Models of Interacting Galaxies
- Shocked Gas in IRAS F17207-0014: ISM Collisions and Outflows
- The scaling relation between baryonic mass and stellar disc size of morphologically late-type galaxies
- A Comparative Study of Knots of Star Formation in Interacting vs. Spiral Galaxies
- The energy source and dynamics of infrared luminous galaxy ESO 148-IG002
- HI vs. H - Comparing the Kinematic Tracers in Modeling the Initial Conditions of the Mice
Cited by in corpus (6)
- MUSE view of Arp220: Kpc-scale multi-phase outflow and evidence for positive feedback
- Prevalence of neutral gas in centres of merging galaxies
- Constraints on Fluctuating Star Formation Rates for Intermediate-mass Galaxies with H and UV Luminosities
- Fading Light, Fierce Winds: JWST Snapshot of a Sub-Eddington Quasar at Cosmic Dawn
- Properties of Interstellar Medium in the S0 Galaxy NGC 1222: Evidence for Shocked-enhanced Line Emission
- Common Excitation Patterns of Star Formation, Active Galactic Nuclei, and Shocks in Seyfert Galaxies