scholarly journals A Photometric and Kinematic Analysis of UDG1137+16: Probing Ultra-Diffuse Galaxy Formation in a Group Environment

Author(s):  
Jonah S Gannon ◽  
Bililign T Dullo ◽  
Duncan A Forbes ◽  
R Michael Rich ◽  
Javier Román ◽  
...  

Abstract The dominant physical formation mechanism(s) for ultra-diffuse galaxies (UDGs) is still poorly understood. Here, we combine new, deep imaging from the Jeanne Rich Telescope with deep integral field spectroscopy from the Keck II telescope to investigate the formation of UDG1137+16. Our new analyses confirm both its environmental association with the low density UGC 6594 group, along with its large size of 3.3 kpc and status as a UDG. The new imaging reveals two distinct stellar components for UDG1137+16, indicating that a central stellar body is surrounded by an outer stellar envelope undergoing tidal interaction. Both the components have approximately similar stellar masses. From our integral field spectroscopy we measure a stellar velocity dispersion within the half-light radius (15 ± 4 km s−1) and find that UDG1137+16 is similar to some other UDGs in that it is likely dark matter dominated. Incorporating literature measurements, we also examine the current state of UDG observational kinematics. Placing these data on the central stellar velocity dispersion – stellar mass relation, we suggest there is little evidence for UDG1137+16 being created through a strong tidal interaction. Finally, we investigate the constraining power current dynamical mass estimates (from stellar and globular cluster velocity dispersions) have on the total halo mass of UDGs. As most are measured within the half-light radius, they are unable to accurately constrain UDG total halo masses.

2007 ◽  
Vol 3 (S245) ◽  
pp. 271-276
Author(s):  
Reynier F. Peletier ◽  
Katia Ganda ◽  
Jesús Falcón-Barroso ◽  
Roland Bacon ◽  
Michele Cappellari ◽  
...  

AbstractWe discuss some recent integral field spectroscopy using the SAURON instrument of a sample consisting of 24 early-type spirals, part of the SAURON Survey, and 18 late-type spirals. Using 2-dimensional maps of their stellar radial velocity, velocity dispersion, and absorption line strength, it is now much easier to understand the nature of nearby galactic bulges. We discuss a few highlights of this work, and point out some new ideas about the formation of galactic bulges.


2001 ◽  
Vol 205 ◽  
pp. 220-221
Author(s):  
Matthias Tecza ◽  
Linda Tacconi ◽  
Reinhard Genzel

We present results from sub-arcsecond near infrared integral field spectroscopy and millimeter IRAM-interferometry of the interacting galaxy NGC 6240. Using stellar absorption features in the NIR we determined the stellar velocity field and dispersion in NGC 6240. The two NIR emission peaks show rapid rotation and indicate a prograde encounter of the two progenitor galaxies. From the velocity dispersion an excess mass between the two nuclei is detected. This mass can be attributed to a massive rotating disk of cold CO gas located between the nuclei.


2019 ◽  
Vol 14 (S353) ◽  
pp. 172-175
Author(s):  
Virginia Cuomo ◽  
Enrico Maria Corsini ◽  
Alfonso J. L. Aguerri ◽  
Victor P. Debattista

AbstractWe present surface photometry and stellar kinematics of NGC 4264, a lenticular galaxy in the region of the Virgo Cluster undergoing a tidal interaction with its neighbour, NGC 4261. We measured the bar radius and strength from SDSS imaging and the bar pattern speed from MUSE integral-field spectroscopy. We find that NGC 4264 hosts a strong and large bar, which is rotating fast. The accurate measurement of the bar rotation rate allows us to exclude that the formation of the bar was triggered by the ongoing interaction.


2016 ◽  
Vol 11 (S321) ◽  
pp. 288-288
Author(s):  
N. F. Boardman ◽  
A. Weijmans ◽  
R. C. E. van den Bosch ◽  
L. Zhu ◽  
A. Yildirim ◽  
...  

Much progress has been made in recent years towards understanding how early-type galaxies (ETGs) form and evolve. SAURON (Bacon et al. 2001) integral-field spectroscopy from the ATLAS3D survey (Cappellari et al. 2011) has suggested that less massive ETGs are linked directly to spirals, whereas the most massive objects appear to form from a series of merging and accretion events (Cappellari et al. 2013). However, the ATLAS3D data typically only extends to about one half-light radius (or effective radius, Re), making it unclear if this picture is truly complete.


2008 ◽  
Author(s):  
F. Gracia-Temich ◽  
B. García-Lorenzo ◽  
Y. Padilla-Michel ◽  
J. F. M. Escobar-Romero ◽  
J. J. Fuensalida ◽  
...  

2012 ◽  
Vol 541 ◽  
pp. A119 ◽  
Author(s):  
A. Fernández-Martín ◽  
D. Martín-Gordón ◽  
J. M. Vílchez ◽  
E. Pérez Montero ◽  
A. Riera ◽  
...  

2011 ◽  
Vol 48 ◽  
pp. 109-114 ◽  
Author(s):  
B.L. James ◽  
Y.G. Tsamis ◽  
M.J. Barlow ◽  
M.S. Westmoquette ◽  
J. Walsh ◽  
...  

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