Creating S0s with major mergers: a 3D view
Abstract
A number of simulators have argued that major mergers can sometimes preserve discs (e.g. Springel & Hernquist 2005), but the possibility that they could explain the emergence of lenticular galaxies (S0s) has been generally neglected. In fact, observations of S0s reveal a strong structural coupling between their bulges and discs, which seems difficult to reconcile with the idea that they come from major mergers. However, in Querejeta et al. (2015a) we have used N-body simulations of binary mergers to show that, under favourable conditions, discs are first destroyed but soon regrow out of the leftover debris, matching observational photometric scaling relations (e.g. Laurikainen et al. 2010). Additionally, in Querejeta et al. (2015b) we have shown how the merger scenario agrees with the recent discovery that S0s and most spirals are not compatible in an angular momentum--concentration plane. This important result from CALIFA constitutes a serious objection to the idea that spirals transform into S0s mainly by fading (e.g. via ram-pressure stripping, as that would not explain the observed simultaneous change in and concentration), but our simulations of major mergers do explain that mismatch. From such a 3D comparison we conclude that mergers must be a relevant process in the build-up of the current population of S0s.
Keywords
Cite
@article{arxiv.1510.04973,
title = {Creating S0s with major mergers: a 3D view},
author = {Miguel Querejeta and M. Carmen Eliche-Moral and Trinidad Tapia and Alejandro Borlaff and Glenn van de Ven and Mariya Lyubenova and Marie Martig and Jesús Falcón-Barroso and Jairo Méndez-Abreu and Jaime Zamorano and Jesús Gallego},
journal= {arXiv preprint arXiv:1510.04973},
year = {2016}
}
Comments
10 pages, 3 figures. Proceedings from the European Week of Astronomy (EWASS), Tenerife, June 2015 (Sp3)