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Investigating photometric and spectroscopic variability in the multiply-imaged Little Red Dot A2744-QSO1

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arxiv 2502.07875 v3 pith:B733VNO4 submitted 2025-02-11 astro-ph.GA

Investigating photometric and spectroscopic variability in the multiply-imaged Little Red Dot A2744-QSO1

classification astro-ph.GA
keywords variabilitya2744-qso1photometriclinesspectroscopicalphabetabroad
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

JWST observations have uncovered a new population of red, compact objects at high redshifts dubbed `Little Red Dots' (LRDs), which typically show broad emission lines and are thought to be dusty Active Galactic Nuclei (AGN). Some of their other features, however, challenge the AGN explanation, such as prominent Balmer breaks and extremely faint or even missing metal high-ionization lines, X-ray, or radio emission, including in deep stacks. Time variability is another, robust, test of AGN activity. Here, we exploit the $z=7.045$ multiply-imaged LRD A2744-QSO1, which offers a particularly unique test of variability due to lensing-induced time delays between the three images spanning 22 yr (2.7 yr in the rest-frame), to investigate its photometric and spectroscopic variability. We find the equivalent widths (EWs) of the broad H$\alpha$ and H$\beta$ lines, which are independent of magnification and other systematics, to exhibit significant variations, up to $18\pm3$ % for H$\alpha$ and up to $22\pm8$ % in H$\beta$, on a timescale of 875 d (2.4 yr) in the rest-frame. This suggests that A2744-QSO1 is indeed an AGN. We find no significant photometric variability beyond the limiting systematic uncertainties, so it currently cannot be determined whether the EW variations are due to line-flux or continuum variability. These results are consistent with a typical damped random walk (DRW) variability model for an AGN like A2744-QSO1 ($M_{\mathrm{BH}}=4\times10^7 \mathrm{M}_{\odot}$) given the sparse sampling of the light-curve with the available data. Our results therefore support the AGN interpretation of this LRD, and highlight the need for further photometric and spectroscopic monitoring in order to build a detailed and reliable light-curve.

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Forward citations

Cited by 8 Pith papers

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

  1. Misaligned or chaotic? A strong break of axial symmetry in the local LRD J1025 revealed with VLT/FORS2 spectropolarimetry

    astro-ph.GA 2026-07 accept novelty 7.0

    The local Little Red Dot J1025 shows a 48° polarisation-angle offset between continuum and broad H-alpha, requiring broken axial symmetry.

  2. A direct black hole mass measurement in a Little Red Dot at the Epoch of Reionization

    astro-ph.GA 2025-08 conditional novelty 7.0

    A lensed Little Red Dot at z=7.04 shows Keplerian rotation around a central point mass, giving the first direct dynamical black hole mass measurement in the epoch of reionization.

  3. Ultrahigh-energy cosmogenic neutrino emissions in the high-redshift universe

    astro-ph.HE 2026-04 conditional novelty 6.0

    If Little Red Dots accelerate protons to ~10 EeV, their interactions with the high-redshift CMB produce a ~50 PeV cosmogenic neutrino bump consistent with IceCube.

  4. The Two Orbital, Interacting Hatano-Nelson Model

    cond-mat.str-el 2026-04 unverdicted novelty 6.0

    In the two-orbital interacting Hatano-Nelson model, phase diagrams show regimes of purely real spectra controlled by interaction strength, non-Hermiticity, and interchain hopping, with links to skin modes and qualitat...

  5. Do Little Red Dots Vary?

    astro-ph.GA 2025-09 conditional novelty 6.0

    Super-Eddington accretion models can explain why little red dots show almost no variability, whereas standard sub-Eddington AGN variability models predict changes that should already have been seen.

  6. A "Black Hole Star" Reveals the Remarkable Gas-Enshrouded Hearts of the Little Red Dots

    astro-ph.GA 2025-03 unverdicted novelty 6.0

    A source 660 million years after the Big Bang is interpreted as a black hole star with a dust-free dense gas atmosphere, implying Little Red Dots have black hole masses overestimated by orders of magnitude.

  7. Ultrahigh-energy cosmogenic neutrino emissions in the high-redshift universe

    astro-ph.HE 2026-04 unverdicted novelty 5.0

    High-redshift AGN emitting UHE protons up to 10^19 eV generate a 50 PeV cosmogenic neutrino bump consistent with IceCube data from their JWST-measured average properties without fine-tuning.

  8. The Two Orbital, Interacting Hatano-Nelson Model

    cond-mat.str-el 2026-04 unverdicted novelty 5.0

    Phase diagrams for a purely real spectrum are obtained in the two-particle sector of a two-chain interacting Hatano–Nelson–Hubbard model, with winding-number and Lindblad checks of boundary and open-system behavior.