PAPER / ARXIV:2609.14264
Kosei Sakai , Kazuhiro Nakazawa , Maxim Markevitch , Dominique Eckert , Yuichiro Ezoe , Yuto Ichinohe , Richard Kelley , Richard Mushotzky , Nobuhiro Okabe , Yuki Omiya , Naomi Ota , Cicely Potter , Andrew Szymkowiak , Shunsuke Torii , Nhut Truong , Ayşegül Tümer , Yuusuke Uchida , Dan Wik , Irina Zhuravleva , John ZuHone
RESUMO
The intracluster medium (ICM) in merging galaxy clusters exhibits turbulence and bulk flows. Unraveling these components is crucial not only for elucidating the geometry of the cluster mergers, but also for understanding the physics of magnetic field amplification and relativistic particle acceleration. XRISM/Resolve data for two $3'\times3'$ fields in the core of the Coma cluster reveales that the ICM in the central field moves with $\Delta cz = -430$~km~s$^{-1}$ relative to the cluster galaxy average, while that in the southern field moves with $\Delta cz = -730$~km~s$^{-1}$ (see \cite{2025ApJ...985L..20X}, hereinafter ``Paper I''). In this paper, we perform a more detailed analysis of these data sets to search for non-Gaussian features in the Fe-K line complex profiles. In the spectra from the northwest (NW) quadrant of the central field, in addition to the main and redshifted ICM components ($\Delta cz = -40$ km s$^{-1}$) reported in Paper I, we find evidence of another, blueshifted component, moving with $\Delta cz = -1250$ km s$^{-1}$. For a systematic search for other significant velocity components, we perform a bias-free 3 eV step multi-component fit to the Resolve full-array spectra from the central and southern fields. This search uncovers another redshifted component in the southern field, moving with $\Delta cz \sim +1230$ km s$^{-1}$. We estimate the energy densities of the ICM turbulence and bulk motion to be similar to each other and several times greater than the energy density of the cluster's $B\sim 5~\mu$G magnetic field.
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