English

Specific Angular Momentum of Disc Merger Remnants and the $\lambda_R$-Parameter

Astrophysics 2015-05-13 v1

Abstract

We use two-dimensional kinematic maps of simulated binary disc mergers to investigate the λR\lambda_R-parameter, which is a luminosity weighted measure of projected angular momentum per unit mass. This parameter was introduced to subdivide the SAURON sample of early type galaxies in so called fast λR>0.1\lambda_R > 0.1 and slow rotators λR<0.1\lambda_R < 0.1. Tests on merger remnants reveal that λR\lambda_R is a robust indicator of the true angular momentum content in elliptical galaxies. We find the same range of λR\lambda_R values in our merger remnants as in the SAURON galaxies. The merger mass ratio is decisive in creating a slow or a fast rotator in a single binary merger, the former being created mostly in an equal mass merger. Slow rotators have a λR\lambda_R which does not vary with projection. The confusion rate with face-on fast rotators is very small. Merger with low gas fractions form slow rotators with smaller ellipticities and are in much better agreement with the SAURON slow rotators. Remergers of merger remnants are slow rotators but tend to have too high ellipticities. Fast rotators maintain the angular momentum content from the progenitor disc galaxy if merger mass ratio is high. Some SAURON galaxies have values of λR\lambda_R as high as our progenitor disc galaxies.

Keywords

Cite

@article{arxiv.0810.0137,
  title  = {Specific Angular Momentum of Disc Merger Remnants and the $\lambda_R$-Parameter},
  author = {Roland Jesseit and Michele Cappellari and Thorsten Naab and Eric Emsellem and Andreas Burkert},
  journal= {arXiv preprint arXiv:0810.0137},
  year   = {2015}
}

Comments

12 pages, 11Figures, submitted to MNRAS

R2 v1 2026-06-21T11:26:07.885Z