Measuring turbulence and gas motions in galaxy clusters via synthetic Athena X-IFU observations
M. Roncarelli, M. Gaspari, S. Ettori, V. Biffi, F. Brighenti, E., Bulbul, N. Clerc, E. Cucchetti, E. Pointecouteau, E. Rasia

TL;DR
This study demonstrates that the Athena X-IFU instrument can accurately measure and map the kinematic and thermodynamic properties of the intracluster medium in galaxy clusters, with minimal bias and errors, using synthetic observations.
Contribution
We developed a comprehensive X-IFU simulation pipeline and validated its ability to recover ICM properties from hydrodynamical simulations with turbulence injection.
Findings
Measurements are unbiased with errors below 5% for most quantities.
Velocity dispersion measurement has about 15% systematic error.
Reconstructed structure functions match simulation slopes with high accuracy.
Abstract
The X-ray Integral Field Unit (X-IFU) that will be on board the Athena telescope will provide an unprecedented view of the intracluster medium (ICM) kinematics through the observation of gas velocity, , and velocity dispersion, , via centroid-shift and broadening of emission lines, respectively. The improvement of data quality and quantity requires an assessment of the systematics associated with this new data analysis, namely biases, statistical and systematic errors, and possible correlations between the different measured quantities. We have developed an end-to-end X-IFU simulator that mimics a full X-ray spectral fitting analysis on a set of mock event lists, obtained using SIXTE. We have applied it to three hydrodynamical simulations of a Coma-like cluster that include the injection of turbulence. This allowed us to assess the ability of X-IFU to map five physical quantities…
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