Where are the missing baryons in clusters?
arXiv:1007.1980 · doi:10.1073/pnas.1009878108
Abstract
Observations of clusters of galaxies suggest that they contain significantly fewer baryons (gas plus stars) than the cosmic baryon fraction. This `missing baryon' puzzle is especially surprising for the most massive clusters which are expected to be representative of the cosmic matter content of the universe (baryons and dark matter). Here we show that the baryons may not actually be missing from clusters, but rather are extended to larger radii than typically observed. The baryon deficiency is typically observed in the central regions of clusters (~0.5 the virial radius). However, the observed gas-density profile is significantly shallower than the mass-density profile, implying that the gas is more extended than the mass and that the gas fraction increases with radius. We use the observed density profiles of gas and mass in clusters to extrapolate the measured baryon fraction as a function of radius and as a function of cluster mass. We find that the baryon fraction reaches the cosmic value near the virial radius for all groups and clusters above 5e13 solar masses. This suggests that the baryons are not missing, they are simply located in cluster outskirts. Heating processes (shock-heating of the intracluster gas, plus supernovae and AGN feedback) that cause the gas to expand are likely explanations for these results. Upcoming observations should be able to detect these baryons.
Submitted to PNAS
References in corpus (21)
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Sky Maps, Systematic Errors, and Basic Results
- Stellar and total baryon mass fractions in groups and clusters since redshift 1
- The Importance of Mergers for the Origin of Intracluster Stars in Cosmological Simulations of Galaxy Clusters
- The Nearly Universal Merger Rate of Dark Matter Haloes in Lambda-CDM Cosmology
- Calibration of the galaxy cluster M_500-Y_X relation with XMM-Newton
- Simulations of the Sunyaev-Zel'dovich Power Spectrum with AGN Feedback
- LoCuSS: Comparison of Observed X-ray and Lensing Galaxy Cluster Scaling Relations with Simulations
- The baryon fraction of LambdaCDM haloes
- Sunyaev-Zel'dovich Cluster Profiles Measured with the South Pole Telescope
- On the Baryon Fractions in Clusters and Groups of Galaxies
- The Atacama Cosmology Telescope: A Measurement of the 600< ell <8000 Cosmic Microwave Background Power Spectrum at 148 GHz
- Cross-correlation Weak Lensing of SDSS Galaxy Clusters I: Measurements
- X-ray observations of the galaxy cluster PKS 0745-191: To the virial radius, and beyond
- Simulations of cosmic ray feedback by AGN in galaxy clusters
- Exploring the Energetics of Intracluster Gas with a Simple and Accurate Model
- Missing Thermal Energy of the Intracluster Medium
- Revisiting the Baryon Fractions of Galaxy Clusters: A Comparison with WMAP 3-year Results
- The Beta-Model Problem: The Incompatibility of X-ray and Sunyaev-Zeldovich Effect Model Fitting for Galaxy Clusters
- Statistical Properties of the IntraCluster Light from SDSS Image Stacking
- Sunyaev-Zel'dovich Effect Observations of the Bullet Cluster (1E 0657-56) with APEX-SZ
Cited by in corpus (10)
- The Atacama Cosmology Telescope: Combined kinematic and thermal Sunyaev-Zel'dovich measurements from BOSS CMASS and LOWZ halos
- The Atacama Cosmology Telescope: Probing the Baryon Content of SDSS DR15 Galaxies with the Thermal and Kinematic Sunyaev-Zel'dovich Effects
- Consistency of dark matter interpretations of the 3.5 keV X-ray line
- Counts of galaxy clusters as cosmological probes: the impact of baryonic physics
- Turbulence in the SuperModel: Mass Reconstruction with Nonthermal Pressure for Abell 1835
- Are observations of the galaxy cluster Abell 1689 consistent with a neutrino dark matter scenario?
- Dirac neutrino mass from a neutrino dark matter model for the galaxy cluster Abell 1689
- Modified Dark Matter in Galaxies and Galaxy Clusters
- Hydrostatic mass of galaxy clusters within some theories of gravity
- Prediction for the neutrino mass in the KATRIN experiment from lensing by the galaxy cluster A1689