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May 6, 20260 citations

VLTI-GRAVITY observations of blazars

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THTalvikki HovattaELElina LindforsHKHeidi Korhonen

Key Points

  • The aim is to spatially resolve near-infrared emission in blazar jets using VLTI-GRAVITY.
  • Used VLTI-GRAVITY for milliarcsecond-scale near-infrared interferometric observations of blazar Ton 599.
  • Modeled squared visibilities to assess source characteristics in the jets of observed blazars.
  • Conducted observations of four non-flaring blazars utilizing GRAVITY-wide mode.
  • Demonstrated detection of compact jet emission in the near-infrared for blazars.
  • Modeling suggests unresolved or partially resolved jet-base due to coherence loss or emission characteristics.
  • High-resolution observations reveal challenges with additional faint targets leading to poor-quality data in some cases.

Abstract

Parsec-scale jets of blazars have so far been spatially resolved only in millimeter and submillimeter wavelengths, where very long baseline interferometry can be used to obtain milliarcsecond-scale images of the jets. We have attempted to spatially resolve the near-infrared emission in jet-dominated blazars for the first time. We used the VLTI-GRAVITY instrument to obtain milliarcsecond-scale near-infrared interferometric observations of a flaring blazar Ton 599. Additionally, we observed four non-flaring blazars using the GRAVITY-wide mode, where a nearby bright star is used as a fringe tracker. We modeled the squared visibilities of Ton 599 and found that they are incompatible with a single unresolved point source unless there is a significant amount of additional unknown coherence loss in the instrument. With the present data, we cannot distinguish between a model with an unresolved point source and extended emission or coherence loss and a model with a single Gaussian component. This suggests that we are seeing the unresolved or only partially resolved jet-base in near-infrared wavelengths. The wide-field mode of GRAVITY was challenging for the additional relatively faint targets, resulting in either non-detections or poor-quality data that could not be modeled. Our observations demonstrate that it is possible to detect the compact jet emission in blazars with near-infrared interferometry, suggesting that with the improved GRAVITY+ instrument it will be possible to spatially resolve and image the near-infrared emission of blazar jets.

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Cite This Study

Hovatta et al. (2026) studied this question.

synapsesocial.com/papers/69fa983604f884e66b53213bhttps://doi.org/10.1051/0004-6361/202558568/pdf
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