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The Remarkable X-ray Spectra and Variability of the Ultraluminous Weak-Line Quasar SDSS J1521+5202

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arxiv 2408.16060 v1 pith:GJNU3UCF submitted 2024-08-28 astro-ph.HE astro-ph.GA

classification astro-ph.HEastro-ph.GA
keywords x-rayvariabilityj1521absorptionchandraemissionfluxintrinsic
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abstract

We present a focused X-ray and multiwavelength study of the ultraluminous weak-line quasar (WLQ) SDSS J1521+5202, one of the few X-ray weak WLQs that is amenable to basic X-ray spectral and variability investigations. J1521+5202 shows striking X-ray variability during 2006--2023, by up to a factor of $\approx 32$ in 0.5--2 keV flux, and our new 2023 Chandra observation caught it in its brightest X-ray flux state to date. Concurrent infrared/optical observations show only mild variability. The 2023 Chandra spectrum can be acceptably described by a power law with intrinsic X-ray absorption, and it reveals a nominal intrinsic level of X-ray emission relative to its optical/ultraviolet emission. In contrast, an earlier Chandra spectrum from 2013 shows apparent spectral complexity that is not well fit by a variety of models, including ionized-absorption or standard Compton-reflection models. Overall, the observations are consistent with the thick-disk plus outflow model previously advanced for WLQs, where a nominal level of underlying X-ray emission plus variable absorption lead to the remarkable observed X-ray variability. In the case of J1521+5202 it appears likely that the outflow, and not the thick disk itself, lies along our line-of-sight and causes the X-ray absorption.

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Cited by 1 Pith paper

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  1. X-ray variability of SDSS J000532.84+200717.4: from a normal state to an X-weak state

    astro-ph.GA 2026-04 accept novelty 6.0 of 10

    SDSS J0005+2007 transitions from an X-ray-normal to an X-ray-weak state (Δα_ox ≲ −0.3) while optical continuum, broad lines and mid-IR remain stable, supporting transient absorption or coronal changes.

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