This work investigates the alignment of galactic spins with the cosmic web across cosmic time using the cosmological hydrodynamical simulation Horizon-AGN. The cosmic web structure is extracted via the persistent skeleton as implemented in the DISPERSE algorithm. It is found that the spin of low-mass galaxies is more likely to be aligned with the filaments of the cosmic web and to lie within the plane of the walls while more massive galaxies tend to have a spin perpendicular to the axis of the filaments and to the walls. The mass transition is detected with a significance of 9 sigmas. This galactic alignment is consistent with the alignment of the spin of dark haloes found in pure dark matter simulations and with predictions from (anisotrop...
A large-scale hydrodynamical cosmological simulation, Horizon-AGN, is used to investigate the alignm...
International audienceWe study the spin alignment of galaxies and haloes with respect to filaments a...
We investigate the alignment of the spin of dark matter halos relative (i) to the surrounding large-...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
We study the spin alignment of galaxies and halos with respect to filaments and walls of the cosmic ...
We investigate the alignment of galaxies and haloes relative to cosmic web filaments using the P-Mil...
A large-scale hydrodynamical cosmological simulation, Horizon-AGN, is used to investigate the alignm...
International audienceWe study the spin alignment of galaxies and haloes with respect to filaments a...
We investigate the alignment of the spin of dark matter halos relative (i) to the surrounding large-...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
This work investigates the alignment of galactic spins with the cosmic web across cosmic time using ...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
International audienceThis work investigates the alignment of galactic spins with the cosmic web acr...
We study the spin alignment of galaxies and halos with respect to filaments and walls of the cosmic ...
We investigate the alignment of galaxies and haloes relative to cosmic web filaments using the P-Mil...
A large-scale hydrodynamical cosmological simulation, Horizon-AGN, is used to investigate the alignm...
International audienceWe study the spin alignment of galaxies and haloes with respect to filaments a...
We investigate the alignment of the spin of dark matter halos relative (i) to the surrounding large-...