We present a detailed investigation of the effects imprinted by a direct interaction between dark energy and cold dark matter particles on the halo mass function of groups and clusters of galaxies. Making use of the public halo catalogues of the CoDECS simulations, we derive the halo mass function for several different types of coupled dark energy scenarios, based on both the friends-of-friends algorithm and the spherical overdensity halo identification for different values of the overdensity threshold Δc. We compare the computed halo mass functions for coupled dark energy cosmologies with ΛCDM as well as with the predictions of the standard analytic fitting functions. Our results show that the standard fitting functio...
The abundance of galaxy clusters can constrain both the geometry and growth of structure in our Univ...
This is an Open Access article, published by EDP Sciences, under the terms of the Creative Commons A...
Context. Galaxy clusters are luminous tracers of the most massive dark matter haloes in the Universe...
We present a detailed investigation of the effects imprinted by a direct interaction between dar...
none3siWe present a detailed investigation of the effects imprinted by a direct interaction betw...
We present a detailed investigation of the effects imprinted by a direct interaction between dark en...
21 pages, 19 figures, 5 tables, published in MNRAS. Paper I: arXiv:0903.5490International audienceTh...
21 pages, 19 figures, 5 tables, published in MNRAS. Paper I: arXiv:0903.5490International audienceTh...
21 pages, 19 figures, 5 tables, published in MNRAS. Paper I: arXiv:0903.5490International audienceTh...
The universality of the halo mass function is investigated in the context of dark energy cosmologies...
The abundance of galaxy clusters can constrain both the geometry and growth of structure in our Univ...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
The abundance of galaxy clusters can constrain both the geometry and growth of structure in our Univ...
This is an Open Access article, published by EDP Sciences, under the terms of the Creative Commons A...
Context. Galaxy clusters are luminous tracers of the most massive dark matter haloes in the Universe...
We present a detailed investigation of the effects imprinted by a direct interaction between dar...
none3siWe present a detailed investigation of the effects imprinted by a direct interaction betw...
We present a detailed investigation of the effects imprinted by a direct interaction between dark en...
21 pages, 19 figures, 5 tables, published in MNRAS. Paper I: arXiv:0903.5490International audienceTh...
21 pages, 19 figures, 5 tables, published in MNRAS. Paper I: arXiv:0903.5490International audienceTh...
21 pages, 19 figures, 5 tables, published in MNRAS. Paper I: arXiv:0903.5490International audienceTh...
The universality of the halo mass function is investigated in the context of dark energy cosmologies...
The abundance of galaxy clusters can constrain both the geometry and growth of structure in our Univ...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
International audienceThe abundance of galaxy clusters can constrain both the geometry and growth of...
The abundance of galaxy clusters can constrain both the geometry and growth of structure in our Univ...
This is an Open Access article, published by EDP Sciences, under the terms of the Creative Commons A...
Context. Galaxy clusters are luminous tracers of the most massive dark matter haloes in the Universe...