The kinematic analysis of dark matter and hydrodynamical simulations suggests that the vorticity in large-scale structure is mostly confined to, and predominantly aligned with, their filaments, with an excess of probability of 20 per cent to have the angle between vorticity and filaments direction lower than 60° relative to random orientations. The cross-sections of these filaments are typically partitioned into four quadrantswith opposite vorticity sign, arising frommultiple flows, originating from neighbouringwalls. The spins of haloes embedded within these filaments are consistently aligned with this vorticity for any halo mass, with a stronger alignment for the most massive structures up to an excess of probability of 165 per cent. The ...
The continuous flow of gas and dark matter across scales in the cosmic web can generate correlated d...
Accepted —. Received —; in original form — The alignment of dark matter (DM) halos and the surroundi...
International audienceAlthough structures in the Universe form on a wide variety of scales, from sma...
The kinematic analysis of dark matter and hydrodynamical simulations suggests that the vorticity in ...
The kinematic analysis of dark matter and hydrodynamical simulations suggests that the vorticity in ...
We investigate the alignment of the spin of dark matter halos relative (i) to the surrounding large-...
International audienceState-of-the-art hydrodynamical simulations show that gas inflow through the v...
Dark matter haloes in cosmological filaments and walls have (in average) their spin vector aligned w...
We use a 64h−1Mpc dark matter (DM) only cosmological simulation to examine the large scale orientati...
State-of-the-art hydrodynamical simulations show that gas inflow through the virial sphere of dark m...
We investigate the alignment of haloes with the filaments of the cosmic web using an un-precedently ...
We investigate the alignment of haloes with the filaments of the cosmic web using an un-precedently ...
The MMF technique is used to segment the cosmic web as seen in a cosmological N-body simulation into...
Clusters, filaments, sheets, and voids are the building blocks of the cosmic web. Forming dark matte...
We investigate the alignment of haloes with the filaments of the cosmic web using an unprecedently l...
The continuous flow of gas and dark matter across scales in the cosmic web can generate correlated d...
Accepted —. Received —; in original form — The alignment of dark matter (DM) halos and the surroundi...
International audienceAlthough structures in the Universe form on a wide variety of scales, from sma...
The kinematic analysis of dark matter and hydrodynamical simulations suggests that the vorticity in ...
The kinematic analysis of dark matter and hydrodynamical simulations suggests that the vorticity in ...
We investigate the alignment of the spin of dark matter halos relative (i) to the surrounding large-...
International audienceState-of-the-art hydrodynamical simulations show that gas inflow through the v...
Dark matter haloes in cosmological filaments and walls have (in average) their spin vector aligned w...
We use a 64h−1Mpc dark matter (DM) only cosmological simulation to examine the large scale orientati...
State-of-the-art hydrodynamical simulations show that gas inflow through the virial sphere of dark m...
We investigate the alignment of haloes with the filaments of the cosmic web using an un-precedently ...
We investigate the alignment of haloes with the filaments of the cosmic web using an un-precedently ...
The MMF technique is used to segment the cosmic web as seen in a cosmological N-body simulation into...
Clusters, filaments, sheets, and voids are the building blocks of the cosmic web. Forming dark matte...
We investigate the alignment of haloes with the filaments of the cosmic web using an unprecedently l...
The continuous flow of gas and dark matter across scales in the cosmic web can generate correlated d...
Accepted —. Received —; in original form — The alignment of dark matter (DM) halos and the surroundi...
International audienceAlthough structures in the Universe form on a wide variety of scales, from sma...