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NuSTAR observations of a varying-flux quasar in the Epoch of Reionization

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arxiv 2501.07637 v1 pith:NTEQ3RGD submitted 2025-01-13 astro-ph.HE

classification astro-ph.HE
keywords x-rayobservednustarobservationsquasarsourcecfhqschandra
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abstract

With enough X-ray flux to be detected in a 160s scan by SRG/eROSITA, the $z = 6.19$ quasar CFHQS J142952+544717 is, by far, the most luminous X-ray source known at $z > 6$. We present deep (245 ks) NuSTAR observations of this source; with $\sim180$ net counts in the combined observations, CFHQS J142952+544717 is the most distant object ever observed by the observatory. Fortuitously, this source was independently observed by Chandra $\sim110$ days earlier, enabling the identification of two nearby (30'' and 45'' away), fainter X-ray sources. We jointly fit both Chandra and NuSTAR observations--self-consistently including interloper sources--and find that, to greater than 90% confidence, the observed 3-7 keV flux varied by a factor of $\sim2.6$ during that period, corresponding to approximately two weeks in the quasar rest-frame. This brightening is one the most extreme instances of statistically significant X-ray variability seen in the Epoch of Reionization. We discuss possible scenarios that could produce such rapid change, including X-ray emission from jets too faint at radio frequencies to be observed.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The most distant $\gamma$-ray flare to date: a multiwavelength campaign on the $z = 4.715$ blazar GB6 B1428+4217

    astro-ph.HE 2025-07 conditional novelty 6.0 of 10

    The most distant gamma-ray flare to date, from the z=4.715 blazar GB6 B1428+4217, was followed across the spectrum and shown to be Compton-dominated, in line with the blazar sequence.

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