Shapley Supercluster Survey: ram-pressure stripping versus tidal interactions in the Shapley supercluster
Artículo
Open/ Download
Publication date
2016Metadata
Show full item record
Cómo citar
Merluzzi, P.
Cómo citar
Shapley Supercluster Survey: ram-pressure stripping versus tidal interactions in the Shapley supercluster
Author
Abstract
We present two new examples of galaxies undergoing transformation in the Shapley supercluster core. These low-mass galaxies are members of the two clusters SC 1329-313 and SC 1327-312 z similar to 0.049). Integral-field spectroscopy complemented by imaging in the bands and in H alpha narrow band is used to disentangle the effects of tidal interaction (TI) and ram-pressure stripping (RPS). In both galaxies, SOS 61086 and SOS 90630, we observe one-sided extraplanar ionized gas extending respectively similar to 30 and similar to 41 kpc in projection from their discs. The galaxies' gaseous discs are truncated, and the kinematics of the stellar and gas components are decoupled, supporting the RPS scenario. The emission of the ionized gas extends in the direction of a possible companion for both galaxies suggesting a TI. The overall gas velocity field of SOS 61086 is reproduced by ad hoc N-body/hydrodynamical simulations of RPS acting almost face-on and starting similar to 250 Myr ago, consistent with the age of the young stellar populations. A link between the observed gas stripping and the cluster-cluster interaction experienced by SC 1329-313 and A3562 is suggested. Simulations of ram pressure acting almost edge-on are able to fully reproduce the gas velocity field of SOS 90630, but cannot at the same time reproduce the extended tail of outflowing gas. This suggests that an additional disturbance from a TI is required. This study adds a piece of evidence that RPS may take place in different environments with different impacts and witnesses the possible effect of cluster-cluster merger on RPS.
Indexation
Artículo de publicación ISI
Quote Item
Monthly Notices of the Royal Astronomical Society. Volumen: 460 Número: 3 Páginas: 3345-3369
Collections
The following license files are associated with this item:
Except where otherwise noted, this item's license is described as Attribution-NonCommercial-NoDerivs 3.0 Chile
Related items
Showing items related by title, author, creator and subject.
-
Santana, Felipe; Beaton, Rachael L.; Covey, Kevin R.; O'Connell, Julia E.; Longa Pena, Penélope; Cohen, Roger; Fernández Trincado, José G.; Hayes, Christian R.; Zasowski, Gail; Sobeck, Jennifer S.; Majewski, Steven R.; Chojnowski, S. D.; De Lee, Nathan; Oelkers, Ryan J.; Stringfellow, Guy S.; Almeida, Andrés; Anguiano, Borja; Donor, John; Frinchaboy, Peter M.; Hasselquist, Sten; Johnson, Jennifer A.; Kollmeier, Juna A.; Nidever, David L.; Price Whelan, Adrián M.; Rojas Arriagada, Álvaro; Schultheis, Mathias; Shetrone, Matthew; Simón, Joshua D.; Aerts, Conny; Borissova, Jura; Drout, María R.; Geisler, Doug; Law, C. Y.; Medina, Nicolás; Minniti, Dante; Monachesi, Antonela; Muñoz Vidal, Ricardo; Poleski, Radoslaw; Román Lopes, Alexandre; Schlaufman, Kevin C.; Stutz, Amelia M.; Teske, Johanna; Tkachenko, Andrew; Van Saders, Jennifer L.; Weinberger, Alycia J.; Zoccali, Manuela (IOP, 2021)APOGEE is a high-resolution (R similar to 22,000), near-infrared, multi-epoch, spectroscopic survey of the Milky Way. The second generation of the APOGEE project, APOGEE-2, includes an expansion of the survey to the Southern ...
-
Luo, Rongxin; Hao, Lei; Blanc Mendiberri, Guillermo; Jogee, Shardha; van den Bosch, Remco C. E.; Weinzirl, Tim (IOP Publishing, 2016)NGC 1042 is a late-type bulgeless disk galaxy that hosts low-luminosity active galactic nuclei (AGNs) coincident with a massive nuclear star cluster. In this paper, we present the integral field spectroscopy studies of ...
-
Méndez Abreu, J.; Aguerri, J. A. L.; Falcón Barroso, J.; Galbany, Lluis (Oxford University Press, 2018)We study a sample of 28 S0 galaxies extracted from the integral field spectroscopic (IFS) survey Calar Alto Legacy Integral Field Area. We combine an accurate two-dimensional (2D) multicomponent photometric decomposition ...