Scientific article
OA Policy
English

Delving into the depths of NGC 3783 with XRISM: II. Cross-calibration of X-ray instruments used in the large, multi-missionobservational campaign

ContributorsXRISM Collaboration
Published inAstronomy & astrophysics, vol. 702, p. 12; A147
Publication date2025-10
First online date2025-10-15
Abstract

Context. Accurate X-ray spectroscopic measurements are fundamental for deriving basic physical parameters of the most abundant baryon components in the Universe. The plethora of X-ray observatories currently operational enables a panchromatic view of the high-energy emission of celestial sources. However, uncertainties in the energy-dependent calibration of the instrument transfer functions (e.g. the effective area, energy redistribution, or gain) can limit - and historically, did limit - the accuracy of X-ray spectroscopic measurements.

Aims. We revised the status of the cross-calibration among the scientific payload on board four operation missions: Chandra , NuSTAR , XMM-Newton , and the recently launched XRISM. XRISM carries the micro-calorimeter Resolve, which yields the best energy resolution at energies ≥2 keV. For this purpose, we used the data from a 10-day-long observational campaign targeting the nearby active galactic nucleus NGC 3783, carried out in July 2024.

Methods. We present a novel model-independent method for assessing the cross-calibration status that is based on a multi-node spline of the spectra with the highest-resolving power (XRISM/Resolve in our campaign). We also estimated the impact of the intrinsic variability of NGC 3783 on the cross-calibration status due to the different time coverages of participating observatories and performed an empirical reassessment of the Resolve throughput at low energies.

Results. Based on this analysis, we derived a set of energy-dependent correction factors of the observed responses, enabling a statistically robust analysis of the whole spectral dataset. They will be employed in subsequent papers describing the astrophysical results of the campaign.

Funding
  • NASA [80GSFC21M0002]
  • U.S. Department of Energy [DE-AC52-07NA27344]
  • JSPS [JP22H00158]
  • STFC [ST/T000244/1]
  • Canadian Space Agency [18XARMSTMA]
  • JSPS core [JPJSCCA20220002]
  • National Science Foundation - Collaborative Research: Dust Echo Tomography: New Diagnostics for Galactic Dust and Magnetic Fields [2205918]
Citation (ISO format)
XRISM Collaboration. Delving into the depths of NGC 3783 with XRISM: II. Cross-calibration of X-ray instruments used in the large, multi-missionobservational campaign. In: Astronomy & astrophysics, 2025, vol. 702, p. 12. doi: 10.1051/0004-6361/202556000
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Article (Published version)
Identifiers
Additional URL for this publicationhttps://www.aanda.org/10.1051/0004-6361/202556000
Journal ISSN0004-6361
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