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April 3, 2026The Astrophysical Journal Letters0 citationsOpen Access

Evidence for a Delayed Ultraviolet Counterpart to X-Ray Quasiperiodic Eruptions in Ansky

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HGHengxiao GuoZYZhen YanYLYa-Ping Li

Key Points

  • To investigate the correlation between ultraviolet (UV) emissions and X-ray quasiperiodic eruptions (QPEs) in the source Ansky.
  • Analyzed periodic modulations of UV emission over five cycles
  • Measured time lag between UV and X-ray signals
  • Calculated cross-correlation coefficient of UV and X-ray eruptions
  • Identified a UV response that lags X-ray eruptions by approximately 0.9 days
  • Achieved a cross-correlation coefficient of ~0.6
  • Proposed mechanisms for lag involving diffusion timescale or light-crossing time from the black hole

Abstract

Abstract X-ray quasiperiodic eruptions (QPEs) represent a novel population of extreme, repeating nuclear transients whose physical origins remain debated. A defining characteristic of QPEs has been their exclusive detection in the X-ray band, with a notable absence of correlated multiwavelength counterparts. Here we report the first detection of a recurrent ultraviolet (UV) response temporally coupled to the X-ray QPE signal in the source Ansky/ZTF19acnskyy. The UV emission displays coherent periodic modulations over five consecutive cycles, systematically lagging the X-ray eruptions by 0.9 6 − 0.39 + 0.38 days, with a cross-correlation coefficient of r max ∼ 0.6 . We suggest that the detectability of this corresponding signal may be enabled by Ansky’s unusually long recurrence timescale, which could reduce the temporal smearing of the UV response seen in more rapid QPEs. The observed delay may correspond to a diffusion timescale associated with heated blobs. However, we cannot exclude the possibility that the lag corresponds to the light-crossing time associated with X-ray irradiation that originates near the central black hole and propagates to the outer UV-emitting region. While numerous QPE models have been proposed, any viable model for Ansky must be able to simultaneously explain the presence of a UV counterpart, its measured time lag, and the previously observed steadily increasing recurrence period.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69cf588f5a333a82146097efhttps://doi.org/10.3847/2041-8213/ae524b
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