Outflowing photoionized plasma in Circinus X-1 using the high-resolution X-ray spectrometer Resolve onboard XRISM and the radiative transfer code cloudy

dc.contributor.authorTsujimoto, Masahiro
dc.contributor.authorEnoto, Teruaki
dc.contributor.authorTrigo, María Díaz
dc.contributor.authorHell, Natalie
dc.contributor.authorChakraborty, Priyanka
dc.contributor.authorLeutenegger, Maurice A.
dc.contributor.authorLoewenstein, Michael
dc.contributor.authorPradhan, Pragati
dc.contributor.authorShidatsu, Megumi
dc.contributor.authorTakahashi, Hiromitsu
dc.contributor.authorYaqoob, Tahir
dc.date.accessioned2025-04-23T20:30:33Z
dc.date.available2025-04-23T20:30:33Z
dc.date.issued2025-03-11
dc.description.abstractHigh-resolution X-ray spectroscopy is a key to understanding the mass inflow and outflow of compact objects. Spectral lines carry information about the ionization, density, and velocity structures through their intensity ratios and profiles. They are formed in non-local thermodynamic equilibrium conditions under the intense radiation field from the compact objects, thus radiative transfer (RT) calculation is a requisite for proper interpretations. We present such a study for a low-mass X-ray binary, Circinus X-1, from which the P Cygni profile was discovered using the X-ray grating spectrometer onboard Chandra. We observed the source using the X-ray microcalorimeter onboard XRISM at an orbital phase of 0.93-0.97 and revealed many spectral features unidentified before; the higher series transitions (n to 1; n > 2) of highly-ionized (H- and He-like) S, Ca, Ar, and Fe in emission and absorption, the Fe K{\alpha} and K\b{eta} inner-shell excitation absorption of mildly-ionized (O- to Li-like) Fe, and resolved fine-structure level transitions in the Fe Ly{\alpha} and He{\alpha} complexes. They blend with each other at different velocity shifts on top of apparently variable continuum emission that changed its flux by an order of magnitude within a 70 ks telescope time. Despite such complexity in the observed spectra, most of them can be explained by a simple model consisting of the photoionized plasma outflowing at ~300 km s-1 and the variable blocking material in the line of sight of the incident continuum emission from the accretion disk. We demonstrate this with the aid of the RT code cloudy for the line ratio diagnostics and spectral fitting. We further constrain the physical parameters of the outflow and argue that the outflow is launched close to the outer edge of the accretion disk and can be driven radiatively by being assisted by the line force calculated using the RT simulation.
dc.description.sponsorshipThis work was supported by the JSPS Core-to-Core Program (grant number: JPJSCCA20220002). MS acknowledges support by Grantsin-Aid for Scientific Research 19K14762 and 23K03459 from the Ministry of Education, Culture, Sports, Science, and Technology (MEXT) of Japan. Part of this work was performed under the auspices of the U.S. Department of Energy by Lawrence Livermore National Laboratory under Contract DE-AC52-07NA27344. The material is based upon work supported by NASA under award number 80GSFC21M0002. This research made use of the JAXA’s high-performance computing system JSS3.
dc.description.urihttps://arxiv.org/abs/2503.08254
dc.format.extent13 pages
dc.genrejournal articles
dc.genrepreprints
dc.identifierdoi:10.13016/m2a556-7c7y
dc.identifier.urihttps://doi.org/10.48550/arXiv.2503.08254
dc.identifier.urihttp://hdl.handle.net/11603/37964
dc.language.isoen_US
dc.relation.isAvailableAtThe University of Maryland, Baltimore County (UMBC)
dc.relation.ispartofUMBC Center for Space Sciences and Technology (CSST) / Center for Research and Exploration in Space Sciences & Technology II (CRSST II)
dc.relation.ispartofUMBC Faculty Collection
dc.rightsThis work was written as part of one of the author's official duties as an Employee of the United States Government and is therefore a work of the United States Government. In accordance with 17 U.S.C. 105, no copyright protection is available for such works under U.S. Law.
dc.rightsPublic Domain
dc.rights.urihttps://creativecommons.org/publicdomain/mark/1.0/
dc.titleOutflowing photoionized plasma in Circinus X-1 using the high-resolution X-ray spectrometer Resolve onboard XRISM and the radiative transfer code cloudy
dc.typeText

Files

Original bundle

Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
2503.08254v1.pdf
Size:
1.32 MB
Format:
Adobe Portable Document Format