Temperature Structure in the Perseus Cluster Core Observed with Hitomi
Hitomi Collaboration: Felix Aharonian, Hiroki Akamatsu, Fumie Akimoto,, Steven W. Allen, Lorella Angelini, Marc Audard, Hisamitsu Awaki, Magnus, Axelsson, Aya Bamba, Marshall W. Bautz, Roger Blandford, Laura W. Brenneman,, Gregory V. Brown, Esra Bulbul, Edward M. Cackett

TL;DR
This study uses Hitomi's high-resolution X-ray spectroscopy to analyze the temperature structure of the Perseus cluster core, revealing slight deviations from a single-temperature plasma and suggesting a multi-temperature environment.
Contribution
First direct measurement of excitation and ionization temperatures in the Perseus cluster core using Hitomi SXS data, providing new insights into the plasma's thermal structure.
Findings
Spectrum consistent with a single-temperature plasma model
Evidence of a multi-temperature component around 3 and 5 keV
Detection of temperature variations correlated with atomic mass
Abstract
The present paper investigates the temperature structure of the X-ray emitting plasma in the core of the Perseus cluster using the 1.8--20.0 keV data obtained with the Soft X-ray Spectrometer (SXS) onboard the Hitomi Observatory. A series of four observations were carried out, with a total effective exposure time of 338 ks and covering a central region in diameter. The SXS was operated with an energy resolution of 5 eV (full width at half maximum) at 5.9 keV. Not only fine structures of K-shell lines in He-like ions but also transitions from higher principal quantum numbers are clearly resolved from Si through Fe. This enables us to perform temperature diagnostics using the line ratios of Si, S, Ar, Ca, and Fe, and to provide the first direct measurement of the excitation temperature and ionization temperature in the Perseus cluster. The observed spectrum is roughly…
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