TY - JOUR
T1 - High-spectral-resolution X-Ray Observations of the Evolved Supermassive Stellar Binary System η Carinae
T2 - Fe Kα Band Profile Revealed with XRISM
AU - XRISM Collaboration
AU - Audard, Marc
AU - Awaki, Hisamitsu
AU - Ballhausen, Ralf
AU - Bamba, Aya
AU - Behar, Ehud
AU - Boissay-Malaquin, Rozenn
AU - Brenneman, Laura
AU - Brown, Gregory V.
AU - Corcoran, Michael F.
AU - Corrales, Lia
AU - Costantini, Elisa
AU - Cumbee, Renata
AU - Diaz Trigo, Maria
AU - Done, Chris
AU - Dotani, Tadayasu
AU - Ebisawa, Ken
AU - Eckart, Megan E.
AU - Eckert, Dominique
AU - Eguchi, Satoshi
AU - Enoto, Teruaki
AU - Ezoe, Yuichiro
AU - Foster, Adam
AU - Fujimoto, Ryuichi
AU - Fujita, Yutaka
AU - Fukazawa, Yasushi
AU - Fukushima, Kotaro
AU - Furuzawa, Akihiro
AU - Gallo, Luigi
AU - García, Javier A.
AU - Goto, Emi
AU - Gu, Liyi
AU - Guainazzi, Matteo
AU - Hagino, Kouichi
AU - Hamaguchi, Kenji
AU - Hatsukade, Isamu
AU - Hayashi, Katsuhiro
AU - Hayashi, Takayuki
AU - Hell, Natalie
AU - Hodges-Kluck, Edmund
AU - Hornschemeier, Ann
AU - Ichinohe, Yuto
AU - Inoue, Shun
AU - Ishi, Daiki
AU - Ishida, Manabu
AU - Ishihara, Yukiko
AU - Ishikawa, Kumi
AU - Ishisaki, Yoshitaka
AU - Junqueira, Francisco
AU - Kaastra, Jelle
AU - Kallman, Timothy
N1 - Publisher Copyright:
© 2026. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the https://creativecommons.org/licenses/by/4.0/. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
PY - 2026/6/1
Y1 - 2026/6/1
N2 - The supermassive binary system, η Carinae, is experiencing enormous wind-driven mass loss at a rate unparalleled in the rest of the Galaxy. Their wind–wind collision (WWC) continuously produces shock heated, X-ray-emitting plasmas. The XRISM X-ray observatory observed the system in 2023 and 2024 when the X-ray emission began to increase toward periastron passage in 2025. This paper reports unprecedentedly high-resolution X-ray spectra in the Fe Kα band between 6.2 and 7.1 keV, obtained with the Resolve X-ray microcalorimeter. The hydrogen-like (Lyα) and helium-like (Heα) lines reveal three velocity components. Two of them are broadened with maximum velocities of 2000–3000 km s−1, likely originating from the postshock companion wind. The other is relatively narrow, with a Gaussian broadening of only ∼290 km s−1 in 1σ, which may originate from the postshock companion wind at the WWC stagnation point or penetrating the primary wind. The Fe fluorescent lines exhibit a moderate blueshift and broadening with velocities at 100–200 km s−1, consistent with the primary wind’s velocity field. The spectra also confirm a Compton shoulder of the Heα line complex for the first time. Both fluorescing and scattering spectral profiles indicate that the binary system is seen from the companion side during these observations. The flux ratio of the Compton-scattering emission to the fluorescent line suggests substantial hydrogen depletion of the primary wind, expected from CNO-cycled hydrogen nuclear fusion gas.
AB - The supermassive binary system, η Carinae, is experiencing enormous wind-driven mass loss at a rate unparalleled in the rest of the Galaxy. Their wind–wind collision (WWC) continuously produces shock heated, X-ray-emitting plasmas. The XRISM X-ray observatory observed the system in 2023 and 2024 when the X-ray emission began to increase toward periastron passage in 2025. This paper reports unprecedentedly high-resolution X-ray spectra in the Fe Kα band between 6.2 and 7.1 keV, obtained with the Resolve X-ray microcalorimeter. The hydrogen-like (Lyα) and helium-like (Heα) lines reveal three velocity components. Two of them are broadened with maximum velocities of 2000–3000 km s−1, likely originating from the postshock companion wind. The other is relatively narrow, with a Gaussian broadening of only ∼290 km s−1 in 1σ, which may originate from the postshock companion wind at the WWC stagnation point or penetrating the primary wind. The Fe fluorescent lines exhibit a moderate blueshift and broadening with velocities at 100–200 km s−1, consistent with the primary wind’s velocity field. The spectra also confirm a Compton shoulder of the Heα line complex for the first time. Both fluorescing and scattering spectral profiles indicate that the binary system is seen from the companion side during these observations. The flux ratio of the Compton-scattering emission to the fluorescent line suggests substantial hydrogen depletion of the primary wind, expected from CNO-cycled hydrogen nuclear fusion gas.
KW - Binary stars (154)
KW - Luminous blue variable stars (944)
KW - Massive stars (732)
KW - Stellar abundances (1577)
KW - Stellar winds (1636)
UR - https://www.scopus.com/pages/publications/105039681555
UR - https://www.scopus.com/pages/publications/105039681555#tab=citedBy
U2 - 10.3847/1538-4357/ae3a80
DO - 10.3847/1538-4357/ae3a80
M3 - Article
AN - SCOPUS:105039681555
SN - 0004-637X
VL - 1003
JO - Astrophysical Journal
JF - Astrophysical Journal
IS - 2
ER -