X-ray and optical analysis of the distant, merging double cluster SPT-CLJ2228-5828, its gas bridge, and shock front
K. Migkas, M. W. Sommer, T. Schrabback, E. R. Carrasco, A. Zenteno, H., Zohren, L. E. Bleem, V. Nazaretyan, M. Bayliss, E. Bulbul, B. Floyd, R., Gassis, M. McDonald, S. Grandis, C. Reichardt, A. Sarkar, K. Sharon, T., Somboonpanyakul

TL;DR
This study uses multi-wavelength data to analyze a distant galaxy cluster merger, revealing a pre-merging system with a gas bridge and shock front, providing insights into cluster collision physics at high redshift.
Contribution
It is the first detailed X-ray and optical analysis of a high-redshift pre-merging double galaxy cluster with a gas bridge and shock front.
Findings
Identified a pre-merging double cluster system at z≈0.77.
Detected a 333 kpc gas bridge with baryon overdensity and gas mass.
Observed a weak shock front with Mach number ~1.1 and estimated its age.
Abstract
Galaxy cluster mergers are excellent laboratories for studying a wide variety of different physical phenomena. Such a unique system is the distant SPT-CLJ2228-5828 cluster merger located at . Previous analyses via Sunyaev-Zeldovich and weak lensing data suggested that the system potentially was a dissociative cluster post-merger. In this work, we use new, deep XMM-Newton data to study the hot gas in X-rays, spectroscopic Gemini data to precisely determine the redshift of the two mass concentrations, and new HST data to improve the total mass estimates of the two components. We find that SPT-CLJ2228-5828 constitutes a pre-merging, double cluster system, instead of a post-merger. The merging process of the two clusters has started with their outskirt gas colliding with a on the plane of the sky. We fully characterize the surface brightness, gas…
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