Tracking the formation and evolution of dark matter haloes is a critical aspect of any analysis of cosmological N-body simulations. In particular, the mass assembly of a halo and its progenitors, encapsulated in the form of its merger tree, serves as a fundamental input for constructing semi-analytic models of galaxy formation and, more generally, for building mock catalogues that emulate galaxy surveys. We present an algorithm for constructing halo merger trees from ABACUSSUMMIT, the largest suite of cosmological N-body simulations performed to date consisting of nearly 60 trillion particles, and which has been designed to meet the Cosmological Simulation Requirements of the Dark Energy Spectroscopic Instrument (DESI) survey. Our method tr...
We present a new algorithm for generating merger trees and halo catalogs which explicitly ensures co...
The implementation of ACACIA, a new algorithm to generate dark matter halo merger trees with the Ada...
We present a new algorithm (PINOCCHIO, PINpointing Orbit-Crossing Collapsed HIerarchical objects) to...
Tracking the formation and evolution of dark matter haloes is a critical aspect of any analysis of c...
Context. In the past decade or so, using numerical N-body simulations to describe the gravitational ...
Context. In the past decade or so, using numerical N-body simulations to describe the gravitational...
International audienceContext: In the past decade or so, using numerical N-body simulations to descr...
Although a fair amount of work has been devoted to growing Monte-Carlo merger trees which resemble t...
We present a new Monte Carlo algorithm to generate merger trees describing the formation history of ...
We present an algorithm for generating merger histories of dark matter haloes. The algorithm is base...
Merger trees follow the growth and merger of dark-matter haloes over cosmic history. As well as givi...
Merger tree codes are routinely used to follow the growth and merger of dark matter haloes in simula...
In the concordance ΛCDM cosmological model, galaxies form in the centers of dark matter halos and me...
Merger trees are routinely used to follow the growth and merging history of dark matter haloes and s...
We present a new algorithm for generating merger trees and halo catalogs which explicitly ensures co...
We present a new algorithm for generating merger trees and halo catalogs which explicitly ensures co...
The implementation of ACACIA, a new algorithm to generate dark matter halo merger trees with the Ada...
We present a new algorithm (PINOCCHIO, PINpointing Orbit-Crossing Collapsed HIerarchical objects) to...
Tracking the formation and evolution of dark matter haloes is a critical aspect of any analysis of c...
Context. In the past decade or so, using numerical N-body simulations to describe the gravitational ...
Context. In the past decade or so, using numerical N-body simulations to describe the gravitational...
International audienceContext: In the past decade or so, using numerical N-body simulations to descr...
Although a fair amount of work has been devoted to growing Monte-Carlo merger trees which resemble t...
We present a new Monte Carlo algorithm to generate merger trees describing the formation history of ...
We present an algorithm for generating merger histories of dark matter haloes. The algorithm is base...
Merger trees follow the growth and merger of dark-matter haloes over cosmic history. As well as givi...
Merger tree codes are routinely used to follow the growth and merger of dark matter haloes in simula...
In the concordance ΛCDM cosmological model, galaxies form in the centers of dark matter halos and me...
Merger trees are routinely used to follow the growth and merging history of dark matter haloes and s...
We present a new algorithm for generating merger trees and halo catalogs which explicitly ensures co...
We present a new algorithm for generating merger trees and halo catalogs which explicitly ensures co...
The implementation of ACACIA, a new algorithm to generate dark matter halo merger trees with the Ada...
We present a new algorithm (PINOCCHIO, PINpointing Orbit-Crossing Collapsed HIerarchical objects) to...