Soft X-ray line emission from hot gas in intervening galaxy halos and diffuse gas in the cosmic web
arXiv:2506.15089 · doi:10.1051/0004-6361/202554659
Abstract
Cosmic hot-gas emission is closely related to halo gas acquisition and galactic feedback processes. Their X-ray observations reveal important physical properties and movements of the baryonic cycle of galactic ecosystems. However, the measured emissions toward a target at a cosmological distance would always include contributions from hot gases along the entire line of sight to the target. Observationally, such contaminations are routinely subtracted via different strategies. With this work, we aim to answer an interesting theoretical question regarding the amount of soft X-ray line emissions from intervening hot gases of different origins. We tackled this problem with the aid of the TNG100 simulation. We generated typical wide-field light cones and estimated their impacts on spectral and flux measurements toward X-ray-emitting galaxy-, group- and cluster-halo targets at lower redshifts. We split the intervening hot gases into three categories; that is, the hot gas that is gravitationally bound to either star-forming or quenched galaxy halos, and the diffuse gas, which is more tenuously distributed permeating the cosmic web structures. We find that along a given line of sight, the diffuse gas that permeates the cosmic web structures produces strong oxygen and iron line emissions at different redshifts. The diffuse gas emission in the soft X-ray band can be equal to the emission from hot gases that are gravitationally bound to intervening galaxy halos. The hot-gas emission from the quiescent galaxy halos can be significantly less than that from star-forming halos along the line of sight. The fluxes from all of the line-of-sight emitters as measured in the energy band of 0.4--0.85 keV can reach ~20--200 % of the emission from the target galaxy, group, and cluster halos.
References in corpus (33)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- The Circumgalactic Medium
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- The Search for the Missing Baryons at Low Redshift
- The Cosmic Baryon and Metal Cycles
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- The high redshift galaxy population in hierarchical galaxy formation models
- X-ray coronae in simulations of disc galaxy formation
- The eROSITA Final Equatorial-Depth Survey (eFEDS): Catalog of galaxy clusters and groups
- The Enrichment History of Baryons in the Universe
- Missing Baryons and the Warm-Hot Intergalactic Medium
- Suppressed effective viscosity in the bulk intergalactic plasma
- Hot Gaseous Coronae around Spiral Galaxies: Probing the Illustris Simulation
- The Circum-Galactic Medium of MASsive Spirals II: Probing the Nature of Hot Gaseous Halo around the Most Massive Isolated Spiral Galaxies
- Measuring bulk flows of the intracluster medium in the Perseus and Coma galaxy clusters using XMM-Newton
- The hot circumgalactic medium in the eROSITA All-Sky Survey I. X-ray surface brightness profiles
- The heart of galaxy clusters: demographics and physical properties of cool-core and non-cool-core halos in the TNG-Cluster simulation
- The hot circumgalactic medium in the eROSITA All-Sky Survey II. Scaling relations between X-ray luminosity and galaxies' mass
- X-ray-inferred kinematics of the core ICM in Perseus-like clusters: Insights from the TNG-Cluster simulation
- The warm-hot circumgalactic medium of the Milky Way as seen by eROSITA
- X-ray metal line emission from the hot circumgalactic medium: probing the effects of supermassive black hole feedback
- The hot circumgalactic media of massive cluster satellites in the TNG-Cluster simulation: existence and detectability
- The warm-hot circumgalactic medium around EAGLE-simulation galaxies and its detection prospects with X-ray line emission
- Hot and counter-rotating star-forming disk galaxies in IllustrisTNG and their real-world counterparts
- An Atlas of Gas Motions in the TNG-Cluster Simulation: from Cluster Cores to the Outskirts
- Probing the hot X-ray gas in the narrow-line region of Mrk 3
- Resonant scattering of the OVII X-ray emission line in the circumgalactic medium of TNG50 galaxies
- Mock HUBS observations of hot gas with IllustrisTNG
- On the patchy appearance of the circum-Galactic medium and the influence of foreground absorption