The mergers in Abell 2256: displaced gas and its connection to the radio-emitting plasma

Author:

Breuer J P12ORCID,Werner N134,Mernier F3567ORCID,Mroczkowski T2ORCID,Simionescu A789ORCID,Clarke T E10,ZuHone J A11,Di Mascolo L12ORCID

Affiliation:

1. Department of Theoretical Physics and Astrophysics, Masaryk University, Kotlářská 2, Brno CZ-611 37, Czech Republic

2. European Southern Observatory, Karl-Schwarzschild-Straße 2, D-85748 Garching bei München, Germany

3. MTA-Eötvös University Lendület Hot Universe Research Group, Pázmány Péter sétány 1/A, Budapest 1117, Hungary

4. School of Science, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8526, Japan

5. Institute of Physics, Eötvös University, Pázmány Péter sétány 1/A, Budapest 1117, Hungary

6. ESA/ESTEC, Keplerlaan 1, NL-2201 AZ Noordwijk, the Netherlands

7. SRON Netherlands Institute for Space Research, Sorbonnelaan 2, NL-3584 CA Utrecht, the Netherlands

8. Leiden Observatory, Leiden University, PO Box 9513, NL-2300 RA Leiden, the Netherlands

9. Kavli Institute for the Physics and Mathematics of the Universe (WPI), The University of Tokyo, Kashiwa, Chiba 277-8583, Japan

10. Naval Research Laboratory, 4555 Overlook Avenue SW, Code 7213, Washington, DC 20375, USA

11. Center for Astrophysics | Harvard & Smithsonian, 60 Garden St, MS-67, Cambridge, MA 02138, USA

12. Max-Planck-Institut für Astrophysik, Karl-Schwarzschild-Strasse 1, D-85741 Garching, Germany

Abstract

ABSTRACT We present the results of deep Chandra and XMM–Newton X-ray imaging and spatially resolved spectroscopy of Abell 2256, a nearby (z = 0.058) galaxy cluster experiencing multiple mergers and displaying a rich radio morphology dominated by a large relic. The X-ray data reveal three subclusters: (i) the ‘main cluster’; (ii) the remnant of an older merger in the east of the cluster with an ∼600 kpc-long tail; (iii) a bright, bullet-like, low-entropy infalling system, with a large line-of-sight velocity component. The low-entropy system displays a 250 kpc-long cold front with a break and an intriguing surface brightness decrement. Interestingly, the infalling gas is not co-spatial with bright galaxies and the radio-loud brightest cluster galaxy of the infalling group appears dissociated from the low-entropy plasma by ∼50 kpc in projection, to the south of the eastern edge of the cold front. Assuming that the dark matter follows the galaxy distribution, we predict that it is also significantly offset from the low-entropy gas. Part of the low-frequency radio emission near the cold front might be revived by magnetic field amplification due to differential gas motions. Using analytical models and numerical simulations, we investigate the possibility that the supersonic infall of the subcluster generates a large-scale shock along our line of sight, which can be detected in the X-ray temperature map but is not associated with any clear features in the surface brightness distribution.

Funder

European Southern Observatory

Hungarian Academy of Sciences

NASA

ESA

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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