Building Merger Trees from Cosmological N-body Simulations
ArXiv 0902.0679 (2009)
Abstract:
Although a fair amount of work has been devoted to growing Monte-Carlo merger trees which resemble those built from an N-body simulation, comparatively little effort has been invested in quantifying the caveats one necessarily encounters when one extracts trees directly from such a simulation. To somewhat revert the tide, this paper seeks to provide its reader with a comprehensive study of the problems one faces when following this route. The first step to building merger histories of dark matter haloes and their subhaloes is to identify these structures in each of the time outputs (snapshots) produced by the simulation. Even though we discuss a particular implementation of such an algorithm (called AdaptaHOP) in this paper, we believe that our results do not depend on the exact details of the implementation but extend to most if not all (sub)structure finders. We then highlight different ways to build merger histories from AdaptaHOP haloes and subhaloes, contrasting their various advantages and drawbacks. We find that the best approach to (sub)halo merging histories is through an analysis that goes back and forth between identification and tree building rather than one which conducts a straightforward sequential treatment of these two steps. This is rooted in the complexity of the merging trees which have to depict an inherently dynamical process from the partial temporal information contained in the collection of instantaneous snapshots available from the N-body simulation.Future investigations of GPS and CSS radio sources with LOFAR
Astronomische Nachrichten 330 (2009) 297-297
A millimetre survey of starburst dominated ultraluminous infrared galaxies at z ∼ 2
Monthly Notices of the Royal Astronomical Society 394:3 (2009) 1685-1694
Abstract:
We present millimetre observations of a sample of 12 high-redshift ultraluminous infrared galaxies (ULIRGs) in the extended growth strip (EGS). These objects were initially selected on the basis of their observed mid-IR colours (0.0 < [3.6] - [4.5] < 0.4 and -0.7 < [3.6] - [8.0] < 0.5) to lie at high redshift 1.5 ≲ z ≲ 3, and subsequent 20-38 μm mid-IR spectroscopy confirms that they lie in a narrow redshift window centred on z ≈ 2. We detect 9/12 of the objects in our sample at high significance (>3σ) with a mean 1200 μm flux of 〈FAn 80-kpc Lyα halo around a high-redshift type-2 quasi-stellar object
Monthly Notices of the Royal Astronomical Society 393:1 (2009) 309-316