CWRU PAT Coffee Agenda

Tuesdays 10:30 - 11:30 | Fridays 11:30 - 12:30

+1 Infrared Divergences and the Eikonal.

oxg34 +1

+1 The cosmological dependence of halo and galaxy assembly bias.

xxx230 +1

+1 Hamilton's Object -- a clumpy galaxy straddling the gravitational caustic of a galaxy cluster : Constraints on dark matter clumping.

oxg34 +1

+1 On the influence of halo mass accretion history on galaxy properties and assembly bias.

xxx230 +1

+1 Challenges for $\Lambda$CDM: An update.

cxt282 +1

Showing votes from 2021-05-11 11:30 to 2021-05-14 12:30 | Next meeting is Friday Aug 29th, 11:30 am.

users

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astro-ph.CO

  • The cosmological dependence of halo and galaxy assembly bias.- [PDF] - [Article]

    Sergio Contreras, Jonás Chaves-Montero, Matteo Zennaro, Raul E. Angulo
     

    One of the main predictions of excursion set theory is that the clustering of dark matter haloes only depends on halo mass. However, it has been long established that the clustering of haloes also depends on other properties, including formation time, concentration, and spin; this effect is commonly known as halo assembly bias. We use a suite of gravity-only simulations to study the dependence of halo assembly bias on cosmology; these simulations cover cosmological parameters spanning 10$\sigma$ around state-of-the-art best-fitting values, including standard extensions of the $\Lambda$CDM paradigm such as neutrino mass and dynamical dark energy. We find that the strength of halo assembly bias presents variations smaller than 0.05 dex across all cosmologies studied for concentration and spin selected haloes, letting us conclude that the dependence of halo assembly bias upon cosmology is negligible. We then study the dependence of galaxy assembly bias (i.e. the manifestation of halo assembly bias in galaxy clustering) on cosmology using subhalo abundance matching. We find that galaxy assembly bias also presents very small dependence upon cosmology ($\sim$ 2$\%$-4$\%$ of the total clustering); on the other hand, we find that the dependence of this signal on the galaxy formation parameters of our galaxy model is much stronger. Taken together, these results let us conclude that the dependence of halo and galaxy assembly bias on cosmology is practically negligible.

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gr-qc

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