English

N-body simulations with a cosmic vector for dark energy

Cosmology and Nongalactic Astrophysics 2015-06-05 v2 General Relativity and Quantum Cosmology

Abstract

We present the results of a series of cosmological NN-body simulations of a Vector Dark Energy (VDE) model, performed using a suitably modified version of the publicly available \texttt{GADGET}-2 code. The setups of our simulations were calibrated pursuing a twofold aim: 1) to analyze the large scale distribution of massive objects and 2) to determine the properties of halo structure in this different ramework.We observe that structure formation is enhanced in VDE, since the mass function at high redshift is boosted up to a factor of ten with respect to \LCDM, possibly alleviating tensions with the observations of massive clusters at high redshifts and early reionization epoch. Significant differences can also be found for the value of the growth factor, that in VDE shows a completely different behaviour, and in the distribution of voids, which in this cosmology are on average smaller and less abundant. We further studied the structure of dark matter haloes more massive than 5×10135\times10^{13}\hMsun, finding that no substantial difference emerges when comparing spin parameter, shape, triaxiality and profiles of structures evolved under different cosmological pictures. Nevertheless, minor differences can be found in the concentration-mass relation and the two point correlation function; both showing different amplitudes and steeper slopes.Using an additional series of simulations of a \LCDM\ scenario with the same ΩM\Omega_M and σ8\sigma_8 used in the VDE cosmology, we have been able to establish whether the modifications induced in the new cosmological picture were due to the particular nature of the dynamical dark energy or a straightforward consequence of the cosmological parameters.

Keywords

Cite

@article{arxiv.1205.1695,
  title  = {N-body simulations with a cosmic vector for dark energy},
  author = {Edoardo Carlesi and Alexander Knebe and Gustavo Yepes and Stefan Gottloeber and Jose Beltran Jimenez and Antonio L. Maroto},
  journal= {arXiv preprint arXiv:1205.1695},
  year   = {2015}
}

Comments

Accepted for publication in MNRAS. 18 pages, 19 figures

R2 v1 2026-06-21T21:00:12.412Z