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April 14, 2026Monthly Notices of the Royal Astronomical Society1 citationsOpen Access

Searching for links between energetic millisecond pulsars and repeating fast radio bursts

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RRR J van RuitenJHJ W T HesselsSBShivani Bhandari

Key Points

  • The research aims to investigate potential connections between energetic millisecond pulsars and the properties of FRB 20200120E.
  • Compared characteristics of FRB 20200120E bursts with giant pulses from M28A using observations from the Parkes telescope.
  • Analyzed spectral structure and frequency range of GPs from M28A.
  • Conducted a sub-band search for narrow-band GPs.
  • Identified broad-band spectra for M28A’s GPs spanning 700-4000 MHz with complex spectral peaks.
  • Noted that FRB 20200120E’s bursts exhibited narrow-band spectral peaks similar to those of M28A.
  • Established significant differences in durations, luminosities, and wait-time distributions between the two sources.

Abstract

Abstract The unexpected localization of the repeating FRB 20200120E to a globular cluster challenges conventional FRB models based on magnetars formed via core collapse. One alternative model suggests that FRB 20200120E is a millisecond pulsar (MSP) producing giant pulses (GPs). To test this hypothesis, we compared the characteristics of FRB 20200120E bursts with the GPs of the most energetic Galactic MSP known, M28A (PSR B1821−24A), using observations with the Parkes (Murriyang) telescope’s Ultra Wideband Low-frequency (UWL) receiver. Our analysis provides insight into the spectral structure and frequency extent of M28A’s GPs, revealing broad-band spectra spanning 700 − 4000 MHz (in some cases) with complex spectral peaks. We find that known M28A GP characteristics persist at this bandwidth, such as durations, luminosities, periodicity, wait-time, and energy distribution. A sub-band search for narrow-band GPs yielded no detection of genuinely narrow-band GPs. However, we do find narrow-band spectral peaks of ∼100 MHz bandwidth, a similar scale observed for FRB 20200120E’s bursts. Compared to FRB 20200120E’s bursts, M28A’s GPs have 50 × shorter durations, 105 × lower spectral luminosities, clear periodicity (vs. no periodicity), a purely Poissonian wait-time distribution (vs. quasi-Poissonian), and generally broad-band spectra with narrow-band peaks (vs. only narrow-band bursts). Both sources show a steep energy distribution and minor dispersion measure variability. Our study finds no strong links between M28A and FRB 20200120E. However, we cannot rule out the possibility that FRB 20200120E is a rare and unique type of MSP with no Galactic analogue. Furthermore, higher-cadence monitoring of M28A, for hundreds to thousands of hours, might reveal rare but extremely luminous pulses.

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Cite This Study

Ruiten et al. (2026) studied this question.

synapsesocial.com/papers/69ddd959e195c95cdefd6ae0https://doi.org/10.1093/mnras/stag662
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