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October 22, 2025The Astrophysical Journal Letters8 citationsOpen Access

A Hyperactive Fast Radio Burst Pinpointed in an SMC-like Satellite Host Galaxy

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MBMohit BhardwajMSM. P. SneldersJHJ. W. T. Hessels

Key Points

  • The fast radio burst FRB 20240114A was precisely located near a dwarf galaxy, enhancing understanding of its environment.
  • Using the European VLBI Network, localization achieved ≲90 × 30 mas accuracy, placing the burst 0.5 kpc from its host nucleus.
  • Insights from the dispersion measure analysis indicate that the FM likely originates from nearby galaxy halos, addressing previous anomalies.
  • The findings emphasize the need for high-resolution observations to explore and understand complex galactic systems.

Abstract

Abstract Precise localizations of fast radio bursts (FRBs) are essential for uncovering their host galaxies and immediate environments. We present the milliarcsecond-precision European VLBI Network localization of FRB 20240114A, a hyperactive repeating FRB, achieving ≲90 × 30 mas (1 σ ) accuracy. This precision places the burst 0.5 kpc from the nucleus of its low-metallicity star-forming dwarf host at a spectroscopic redshift of z = 0.130287. Our Gran Telescopio CANARIAS spectroscopic follow-up reveals that the dwarf FRB host is gravitationally bound to a more massive, star-forming spiral galaxy. This establishes the first known instance of an FRB residing in a satellite galaxy within a larger galactic system. This configuration, analogous to the Small Magellanic Cloud orbiting the Milky Way (but at a lower overall mass scale), expands the known diversity of FRB host environments and offers important insights for interpreting seemingly “hostless” or highly offset FRBs. Furthermore, our detailed dispersion measure (DM) budget analysis indicates that the dominant contribution to FRB 20240114A’s DM likely originates from the foreground galaxy halos. This finding addresses the anomalously high DM observed for this FRB and underscores the significant role of intervening foreground structures in shaping observed FRB DMs, which is important for accurate FRB-based cosmological measurements. Our results highlight the importance of deep, high-resolution optical/infrared observations (e.g., with the Hubble or James Webb Space Telescopes ) to fully leverage our precise radio localization and probe the immediate astrophysical birthplaces of FRB progenitors within these complex galactic systems.

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Cite This Study

Bhardwaj et al. (2025) studied this question.

synapsesocial.com/papers/68f83311d24b29c969481641https://doi.org/10.3847/2041-8213/ae0b68
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