We present the origami method of identifying structures, particularly halos, in cosmological N-body simulations. Structure formation can be thought of as the folding of an initially flat three-dimensional manifold in six-dimensional phase space. origami finds the outer folds that delineate these structures. Halo particles are identified as those that have undergone shell-crossing along 3 orthogonal axes, providing a dynamical definition of halo regions that is independent of density. origami also identifies other morphological structures: particles that have undergone shell-crossing along 2, 1, or 0 orthogonal axes correspond to filaments, walls, and voids respectively. We compare this method to a standard Friends-of-Friends halo-finding al...
We use the high resolution cosmological N-body simulations from the Aquarius project to investigate ...
We present a technique for constructing equilibrium triaxial N-body haloes with nearly arbitrary den...
Dark-matter halos are the scaffolding around which galaxies and clusters are built. They form when t...
Structures like galaxies and filaments of galaxies in the Universe come about from the origami-like ...
In a cold-dark-matter universe, cosmological structure formation proceeds in rough analogy to origam...
Abstract. In the current cosmological paradigm, an initially flat three-dimensional manifold that pe...
Summary. Tessellations are valuable both conceptually and for analysis in the study of the large-sca...
We describe an algorithm for identifying ellipsoidal haloes in numerical simulations, and quantify h...
We study dark matter galaxy halos found by Jared W. Coughlin while running the Amiga Halo Finder on ...
We describe a new algorithm for finding substructures within dark matter haloes from N-body simulati...
We study the nature of voids defined as single-stream regions that have not un-dergone shell-crossin...
International audienceIn this paper, we study the triaxial properties of dark matter haloes of a wid...
In this paper, we study the triaxial properties of dark matter haloes of a wide range of masses extr...
Clusters, filaments, sheets, and voids are the building blocks of the cosmic web. Forming dark matte...
We use the high resolution cosmological N-body simulations from the Aquarius project to investigate ...
We use the high resolution cosmological N-body simulations from the Aquarius project to investigate ...
We present a technique for constructing equilibrium triaxial N-body haloes with nearly arbitrary den...
Dark-matter halos are the scaffolding around which galaxies and clusters are built. They form when t...
Structures like galaxies and filaments of galaxies in the Universe come about from the origami-like ...
In a cold-dark-matter universe, cosmological structure formation proceeds in rough analogy to origam...
Abstract. In the current cosmological paradigm, an initially flat three-dimensional manifold that pe...
Summary. Tessellations are valuable both conceptually and for analysis in the study of the large-sca...
We describe an algorithm for identifying ellipsoidal haloes in numerical simulations, and quantify h...
We study dark matter galaxy halos found by Jared W. Coughlin while running the Amiga Halo Finder on ...
We describe a new algorithm for finding substructures within dark matter haloes from N-body simulati...
We study the nature of voids defined as single-stream regions that have not un-dergone shell-crossin...
International audienceIn this paper, we study the triaxial properties of dark matter haloes of a wid...
In this paper, we study the triaxial properties of dark matter haloes of a wide range of masses extr...
Clusters, filaments, sheets, and voids are the building blocks of the cosmic web. Forming dark matte...
We use the high resolution cosmological N-body simulations from the Aquarius project to investigate ...
We use the high resolution cosmological N-body simulations from the Aquarius project to investigate ...
We present a technique for constructing equilibrium triaxial N-body haloes with nearly arbitrary den...
Dark-matter halos are the scaffolding around which galaxies and clusters are built. They form when t...