Publisher's Version/PDFWe describe a new algorithm for finding substructures within dark matter haloes from N-body simulations. The algorithm relies upon the fact that dynamically distinct substructures in a halo will have a local velocity distribution that differs significantly from the mean, i.e. smooth background halo. We characterize the large-scale mean field using a coarsely grained cell-based approach, while a kernel-smoothing process is used to determined the local velocity distribution. Comparing the ratio of these two estimates allows us to identify particles that are strongly clustered in velocity space relative to the background and thus resident in a substructure. From this population of outliers, groups are identified using a ...
We present a new algorithm for identifying the substructure within simulated dark matter haloes. The...
We use cosmological Λ cold dark matter (CDM) numerical simulations to model the evolution of the sub...
We use the very high resolution, fully cosmological simulations from the Aquarius Project, coupled t...
We describe a new algorithm for finding substructures within dark matter haloes from N-body simulati...
We present a detailed comparison of the substructure properties of a single Milky Way sized dark mat...
We investigate the evolution of substructure in cold dark matter halos using N-body simulations of t...
We present a detailed analysis of the properties of tidally stripped material from disrupting substr...
Can N-body simulations reliably determine the structural properties of dark matter halos? Focussing ...
We present a new algorithm for identifying the substructure within simulated dark matter haloes. The...
We present an algorithm which allows the efficient identification and preliminary dynamical analysis...
In Salvador-Solé, Manrique & Botella (Paper I), we used the ConflUent System of Peak trajectories (C...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
Mysterious dark matter constitutes about 85 per cent of all masses in the Universe. Clustering of da...
We study the substructure population of Milky Way (MW)-mass haloes in the Λ cold dark matter (ΛCDM) ...
We study the substructure population of Milky Way (MW)-mass haloes in the Λ cold dark matter (ΛCDM) ...
We present a new algorithm for identifying the substructure within simulated dark matter haloes. The...
We use cosmological Λ cold dark matter (CDM) numerical simulations to model the evolution of the sub...
We use the very high resolution, fully cosmological simulations from the Aquarius Project, coupled t...
We describe a new algorithm for finding substructures within dark matter haloes from N-body simulati...
We present a detailed comparison of the substructure properties of a single Milky Way sized dark mat...
We investigate the evolution of substructure in cold dark matter halos using N-body simulations of t...
We present a detailed analysis of the properties of tidally stripped material from disrupting substr...
Can N-body simulations reliably determine the structural properties of dark matter halos? Focussing ...
We present a new algorithm for identifying the substructure within simulated dark matter haloes. The...
We present an algorithm which allows the efficient identification and preliminary dynamical analysis...
In Salvador-Solé, Manrique & Botella (Paper I), we used the ConflUent System of Peak trajectories (C...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
Mysterious dark matter constitutes about 85 per cent of all masses in the Universe. Clustering of da...
We study the substructure population of Milky Way (MW)-mass haloes in the Λ cold dark matter (ΛCDM) ...
We study the substructure population of Milky Way (MW)-mass haloes in the Λ cold dark matter (ΛCDM) ...
We present a new algorithm for identifying the substructure within simulated dark matter haloes. The...
We use cosmological Λ cold dark matter (CDM) numerical simulations to model the evolution of the sub...
We use the very high resolution, fully cosmological simulations from the Aquarius Project, coupled t...