Effect of Helium Sedimentation on X-ray Measurements of Galaxy Clusters

Mathematics – Logic

Scientific paper

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Scientific paper

The uniformity of the helium-to-hydrogen abundance ratio in X-ray emitting intracluster medium is one of the commonly adopted assumptions in X-ray analyses of galaxy clusters and cosmological constraints derived from these measurements. In this work, we investigate the effect of He sedimentation on X-ray measurements of galaxy clusters in order to assess this assumption and associated systematic uncertainties. By solving a set of flow equations for a H-He plasma, we show that observed temperature drops both in the inner and outer regions dramatically reduce the efficiency of He sedimentation in X-ray clusters, compared to the isothermal case. We show that the effect of He sedimentation is negligibly small in cluster outskirts, but it introduces increasing larger biases in the inner regions of clusters. We show that these biases also introduce an apparent evolution in the observed gas mass fractions of X-ray luminous, dynamically relaxed clusters and hence biases in observational constraints on the dark energy equation of state parameter, w, derived from the cluster distance-redshift relation. The Hubble parameter derived from the combination of X-ray and Sunyaev-Zel'dovich effect measurements is affected by the He sedimentation process as well. Future measurements aiming to constrain w or H0 to better than 10% may need to take into account the effect of He sedimentation. We propose that the evolution of gas mass fraction in the inner regions of clusters should provide unique observational diagnostics of the He sedimentation process.

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