Disconnected pseudo-Cℓ covariances for projected large-scale structure data
Journal of Cosmology and Astroparticle Physics IOP Publishing 2019:11 (2019) 043-043
The impact of the connectivity of the cosmic web on the physical properties of galaxies at its nodes
Monthly Notices of the Royal Astronomical Society Oxford University Press 491:3 (2019) 4294-4309
Abstract:
We investigate the impact of the number of filaments connected to the nodes of the cosmic web on the physical properties of their galaxies using the Sloan Digital Sky Survey. We compare these measurements to the cosmological hydrodynamical simulations Horizon-(no)AGN and Simba. We find that more massive galaxies are more connected, in qualitative agreement with theoretical predictions and measurements in dark matter only simulation. The star formation activity and morphology of observed galaxies both display some dependence on the connectivity of the cosmic web at fixed stellar mass: less star forming and less rotation supported galaxies also tend to have higher connectivity. These results qualitatively hold both for observed and virtual galaxies, and can be understood given that the cosmic web is the main source of fuel for galaxy growth. The simulations show the same trends at fixed halo mass, suggesting that the geometry of filamentary infall impacts galaxy properties beyond the depth of the local potential well. Based on simulations, it is also found that AGN feedback is key in reversing the relationship between stellar mass and connectivity at fixed halo mass. Technically, connectivity is a practical observational proxy for past and present accretion (minor mergers or diffuse infall).Modelling the large scale structure of the Universe as a function of cosmology and baryonic physics
ArXiv 1911.08471 (2019)
Screened fifth forces mediated by dark matter-baryon interactions: Theory and astrophysical probes
Physical Review D American Physical Society (APS) 100:10 (2019) 104035
When galaxies align: intrinsic alignments of the progenitors of elliptical galaxies in the Horizon-AGN simulation
Monthly Notices of the Royal Astronomical Society Oxford University Press 491:January 2020 (2019) 4057-4068