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  1. OA@INAF
  2. PRODOTTI RICERCA INAF
  3. 1 CONTRIBUTI IN RIVISTE (Journal articles)
  4. 1.01 Articoli in rivista
Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.12386/26667
Title: GASP. IV. A Muse View of Extreme Ram-pressure-stripping in the Plane of the Sky: The Case of Jellyfish Galaxy JO204
Authors: GULLIEUSZIK, MARCO 
POGGIANTI, Bianca Maria 
MORETTI, ALESSIA 
Fritz, Jacopo
Jaffé, Yara L.
Hau, George
Bischko, Jan C.
BELLHOUSE, CALLUM 
BETTONI, Daniela 
FASANO, Giovanni
Vulcani, Benedetta 
D'ONOFRIO, MAURO
BIVIANO, ANDREA 
Issue Date: 2017
Journal: THE ASTROPHYSICAL JOURNAL 
Number: 846
Issue: 1
First Page: 27
Abstract: In the context of the GAs Stripping Phenomena in galaxies with Muse (GASP) survey, we present the characterization of JO204, a jellyfish galaxy in A957, a relatively low-mass cluster with M=4.4× {10}<SUP>14</SUP> {M}<SUB>☉ </SUB>. This galaxy shows a tail of ionized gas that extends up to 30 kpc from the main body in the opposite direction of the cluster center. No gas emission is detected in the galaxy outer disk, suggesting that gas-stripping is proceeding outside-in. The stellar component is distributed as a regular disk galaxy; the stellar kinematics shows a symmetric rotation curve with a maximum radial velocity of 200 km s<SUP>-1</SUP> out to 20 kpc from the galaxy center. The radial velocity of the gas component in the central part of the disk follows the distribution of the stellar component; the gas kinematics in the tail retains the rotation of the galaxy disk, indicating that JO204 is moving at high speed in the intracluster medium. Both the emission and radial-velocity maps of the gas and stellar components indicate ram-pressure as the most likely primary mechanism for gas-stripping, as expected given that JO204 is close to the cluster center and it is likely at the first infall in the cluster. The spatially resolved star formation history of JO204 provides evidence that the onset of ram-pressure-stripping occurred in the last 500 Myr, quenching the star formation activity in the outer disk, where the gas has been already completely stripped. Our conclusions are supported by a set of hydrodynamic simulations.
URI: http://hdl.handle.net/20.500.12386/26667
URL: https://iopscience.iop.org/article/10.3847/1538-4357/aa8322
ISSN: 0004-637X
DOI: 10.3847/1538-4357/aa8322
Bibcode ADS: 2017ApJ...846...27G
Fulltext: open
Appears in Collections:1.01 Articoli in rivista

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