A method to search for bulk motions in the ICM with {\sl Chandra} CCD spectra: application to the Bullet cluster
arXiv:1508.04879 · doi:10.1088/0004-637X/809/1/27
Abstract
We propose a strategy to search for bulk motions in the intracluster medium (ICM) of merging clusters based on {\sl Chandra} CCD data. Our goal is to derive robust measurements of the average redshift of projected ICM regions obtained from the centroid of the line emission. We thoroughly explore the effect of the unknown temperature structure along the line of sight to accurately evaluate the systematic uncertainties on the ICM redshift. We apply our method to the "Bullet cluster" (1E~0657-56). We directly identify 23 independent regions on the basis of the surface brightness contours, and measure the redshift of the ICM averaged along the line of sight in each. We find that the redshift distribution across these regions is marginally inconsistent with the null hypothesis of a constant redshift or no bulk motion in the ICM, at a confidence level of about . We tentatively identify the regions most likely affected by bulk motions and find a maximum velocity gradient of about along the line of sight on a scale of kpc along the path of the "bullet." We interpret this as the possible signature of a significant mass of ICM pushed away along a direction perpendicular to the merging. This preliminary result is promising for a systematic search for bulk motions in bright, moderate-redshift clusters based on spatially resolved spectral analysis of {\sl Chandra} CCD data. This preliminary result is promising for a systematic search for bulk motions in bright, moderate-redshift clusters based on spatially resolved spectral analysis of {\sl Chandra} CCD data.
References in corpus (11)
- A direct empirical proof of the existence of dark matter
- Shocks and cold fronts in galaxy clusters
- Strong and weak lensing united III: Measuring the mass distribution of the merging galaxy cluster 1E0657-56
- Contour binning: a new technique for spatially-resolved X-ray spectroscopy applied to Cassiopeia A
- On the Proof of Dark Matter, the Law of Gravity and the Mass of Neutrinos
- Chandra deep observation of XDCP J0044.0-2033, a massive galaxy cluster at z>1.5
- Catching a bullet: direct evidence for the existence of dark matter
- The Swift X-ray Telescope Cluster Survey: data reduction and cluster catalog for the GRB fields
- The Swift X-ray Telescope Cluster Survey III: Cluster Catalog from 2005-2012 Archival Data
- The Swift X-ray Telescope Cluster Survey II. X-ray spectral analysis
- Sunyaev-Zel'dovich Effect Observations of the Bullet Cluster (1E 0657-56) with APEX-SZ
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