Tracing Ram-Pressure Stripping with Warm Molecular Hydrogen Emission
Abstract
We use the Spitzer Infrared Spectrograph (IRS) to study four infalling cluster galaxies with signatures of on-going ram-pressure stripping. H emission is detected in all four; two show extraplanar H emission. The emission usually has a warm (T K) and a hot (T 400 600K) component that is approximately two orders of magnitude less massive than the warm one. The warm component column densities are typically cm with masses of . The warm H is anomalously bright compared with normal star-forming galaxies and therefore may be excited by ram-pressure. In the case of CGCG 97-073, the H is offset from the majority of star formation along the direction of the galaxy's motion in the cluster, suggesting it is forming in the ram-pressure wake of the galaxy. Another galaxy, NGC 4522, exhibits a warm H tail approximately 4 kpc in length. These results support the hypothesis that H within these galaxies is shock-heated from the interaction with the intracluster medium. Stripping of dust is also a common feature of the galaxies. For NGC 4522, where the distribution of dust at 8 m is well resolved, knots and ripples demonstrate the turbulent nature of the stripping process. The H and 24 m luminosities show that most of the galaxies have star formation rates comparable to similar mass counterparts in the field. Finally, we suggest a possible evolutionary sequence primarily related to the strength of ram-pressure a galaxy experiences to explain the varied results observed in our sample.
Keywords
Cite
@article{arxiv.1410.0688,
title = {Tracing Ram-Pressure Stripping with Warm Molecular Hydrogen Emission},
author = {Suresh Sivanandam and Marcia J. Rieke and George H. Rieke},
journal= {arXiv preprint arXiv:1410.0688},
year = {2015}
}
Comments
26 pages, 22 figures, accepted for publication in ApJ