Offsets between the X-ray and the Sunyaev-Zel'dovich-effect peaks in merging galaxy clusters and their cosmological implications
Congyao Zhang (KIAA), Qingjuan Yu (KIAA), Youjun Lu (NAOC)

TL;DR
This study uses hydrodynamical simulations to explore the spatial offsets between X-ray and Sunyaev-Zel'dovich effect peaks in merging galaxy clusters, revealing their dependence on merger dynamics and implications for cosmology.
Contribution
It provides a detailed analysis of the physical mechanisms behind SZ-X-ray offsets and their statistical distribution, offering new insights into cluster merger processes and cosmological parameters.
Findings
Large offsets (>100kpc) can occur during major mergers.
Offsets are mainly caused by a 'jump effect' during pericentric passages.
The offset distribution is bimodal with peaks at low and large offsets.
Abstract
Observations reveal that the peaks of the X-ray map and the Sunyaev-Zel'dovich (SZ) effect map of some galaxy clusters are offset from each other. In this paper, we perform a set of hydrodynamical simulations of mergers of two galaxy clusters to investigate the spatial offset between the maxima of the X-ray and the SZ surface brightness of the merging clusters. We find that significantly large SZ-X-ray offsets (>100kpc) can be produced during the major mergers of galaxy clusters. The significantly large offsets are mainly caused by a `jump effect' occurred between the primary and secondary pericentric passages of the two merging clusters, during which the X-ray peak may jump to the densest gas region located near the center of the small cluster, but the SZ peak remains near the center of the large one. Our simulations show that merging systems with higher masses and larger initial…
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