CLASH-VLT: Constraints on the Dark Matter Equation of State from Accurate Measurements of Galaxy Cluster Mass Profiles
arXiv:1401.5800 · doi:10.1088/2041-8205/783/1/L11
Abstract
A pressureless scenario for the Dark Matter (DM) fluid is a widely adopted hypothesis, despite the absence of a direct observational evidence. According to general relativity, the total mass-energy content of a system shapes the gravitational potential well, but different test particles perceive this potential in different ways depending on their properties. Cluster galaxy velocities, being c, depend solely on the gravitational potential, whereas photon trajectories reflect the contributions from the gravitational potential plus a relativistic-pressure term that depends on the cluster mass. We exploit this phenomenon to constrain the Equation of State (EoS) parameter of the fluid, primarily DM, contained in galaxy clusters. We use the complementary information provided by the kinematic and lensing mass profiles of the galaxy cluster MACS 1206.2-0847 at , as obtained in an extensive imaging and spectroscopic campaign within the CLASH survey. The unprecedented high quality of our data-set and the properties of this cluster are well suited to determine the EoS parameter of the cluster fluid. Since baryons contribute at most to the total mass in clusters and their pressure is negligible, the EoS parameter we derive describes the behavior of the DM fluid. We obtain the most stringent constraint on the DM EoS parameter to date, , averaged over the radial range , where and are the radial and tangential pressure, and is the density. We plan to further improve our constraint by applying the same procedure to all clusters from the ongoing CLASH-VLT program.
5 pages, 1 figures, accepted for publication in the Astrophysical Journal Letters
References in corpus (1)
Cited by in corpus (23)
- The galaxy cluster mass scale and its impact on cosmological constraints from the cluster population
- Magnetic Reconnection and Hot Spot Formation in Black Hole Accretion Disks
- A refined mass distribution of the cluster MACS J0416.12403 from a new large set of spectroscopic multiply lensed sources
- CLASH-VLT: Dissecting the Frontier Fields Galaxy Cluster MACS J0416.1-2403 with Spectra of Member Galaxies
- A New RASS Galaxy Cluster Catalog with Low Contamination Extending to in the DES Overlap Region
- The RoboPol optical polarization survey of gamma-ray - loud blazars
- A Multi-component Matched Filter Cluster Confirmation Tool for eROSITA: Initial Application to the RASS and DES-SV Datasets
- Constraining the Rastall parameters in static spacetimes with galaxy-scale strong gravitational lensing
- CLASH: Accurate Photometric Redshifts with 14 HST bands in Massive Galaxy Cluster Cores
- JWST reveals a possible galaxy merger in triply-lensed MACS0647JD
- CLASH-VLT: Testing the Nature of Gravity with Galaxy Cluster Mass Profiles
- Galaxy cluster's rotation
- Geodesic Model of HF QPOs Tested for Black Holes in Spacetimes Reflecting the Effect of Surrounding Dark Matter
- CLASH-VLT: The inner slope of the MACS J1206.2-0847 dark matter density profile
- The projected gravitational potential of the galaxy cluster MACS~J1206 derived from galaxy kinematics
- Dark matter perturbations and viscosity: a causal approach
- Galaxy cluster hydrostatic masses using Tolman-Oppenheimer-Volkoff equation
- Non-particle dark matter from Hubble parameter
- Galactic space-times in modified theories of gravity
- Dark Matter as gravitational solitons in the weak field limit
- Dark matter halos modeled by polytropic spheres influenced by the relict cosmological constant and trapping polytropes forming supermassive black holes
- Testing Refracted Gravity with kinematics of galaxy clusters
- Point-like source solutions in modified gravity with a critical acceleration