English

Mapping the Intracluster Medium in the Era of High-resolution X-ray Spectroscopy

High Energy Astrophysical Phenomena 2023-10-04 v1 Cosmology and Nongalactic Astrophysics Astrophysics of Galaxies

Abstract

High-resolution spectroscopy in soft X-rays will open a new window to map multiphase gas in galaxy clusters and probe physics of the intracluster medium (ICM), including chemical enrichment histories, circulation of matter and energy during large-scale structure evolution, stellar and black hole feedback, halo virialization, and gas mixing processes. An eV-level spectral resolution, large field-of-view, and effective area are essential to separate cluster emissions from the Galactic foreground and efficiently map the cluster outskirts. Several mission concepts that meet these criteria have been proposed recently, e.g., LEM, HUBS, and SuperDIOS. This theoretical study explores what information on ICM physics could be recovered with such missions and the associated challenges. We emphasize the need for a comprehensive comparison between simulations and observations to interpret the high-resolution spectroscopic observations correctly. Using Line Emission Mapper (LEM) characteristics as an example, we demonstrate that it enables the use of soft X-ray emission lines (e.g., O VII/VIII and Fe-L complex) from the cluster outskirts to measure the thermodynamic, chemical, and kinematic properties of the gas up to r200r_{200} and beyond. By generating mock observations with full backgrounds, analysing their images/spectra with observational approaches, and comparing the recovered characteristics with true ones from simulations, we develop six key science drivers for future missions, including the exploration of multiphase gas in galaxy clusters (e.g., temperature fluctuations, phase-space distributions), metallicity, ICM gas bulk motions and turbulence power spectra, ICM-cosmic filament interactions, and advances for cluster cosmology.

Keywords

Cite

@article{arxiv.2310.02225,
  title  = {Mapping the Intracluster Medium in the Era of High-resolution X-ray Spectroscopy},
  author = {Congyao Zhang and Irina Zhuravleva and Maxim Markevitch and John ZuHone and François Mernier and Veronica Biffi and Ákos Bogdán and Priyanka Chakraborty and Eugene Churazov and Klaus Dolag and Stefano Ettori and William R. Forman and Christine Jones and Ildar Khabibullin and Caroline Kilbourne and Ralph Kraft and Erwin T. Lau and Sheng-Chieh Lin and Daisuke Nagai and Dylan Nelson and Anna Ogorzałek and Elena Rasia and Arnab Sarkar and Aurora Simionescu and Yuanyuan Su and Mark Vogelsberger and Stephen Walker},
  journal= {arXiv preprint arXiv:2310.02225},
  year   = {2023}
}

Comments

24 pages, 26 figures, submitted to MNRAS. Comments are welcome