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May 10, 2026Science China Physics Mechanics and Astronomy0 citationsOpen Access

Detection of cyclotron absorption in the radio emission of GPM 1839-10

YMYunpeng MenEBEwan BarrYQYuanhong Qu

Key Points

  • The research aims to explore the unique radio emission characteristics of GPM 1839-10 and look for evidence of cyclotron absorption.
  • Follow-up observations using the FAST telescope at L-band
  • Detection of seven radio pulses over three decades of GPM 1839-10's activity
  • Analysis of orthogonal polarization mode switches and their correlation with polarized intensity
  • Detected a cyclotron absorption feature in one radio pulse, indicating a magnetic field strength of at least tens of Gauss.
  • Established a consistent correlation between OPM switches and a decrease in polarized intensity.
  • Consistent rotation measures support the stability of the magneto-ionic environment around GPM 1839-10.

Abstract

Abstract GPM 1839-10 is an intriguing long-period radio transient (LPT), distinguished by its activity spanning at least three decades and its highly unusual emission characteristics. These features include orthogonal polarization mode (OPM) switches, down-drifting sub-structures, and distinct linear-to-circular polarization conversion behaviors. In this work, we present follow-up observations utilizing the FAST telescope at L-band, yielding a total of seven detected radio pulses. We find a consistent association between OPM switches and a decrease in polarized intensity. This feature strongly supports the hypothesis that the OPM switches are generated by the incoherent summation of OPMs. Our measured rotation measures (RMs) are consistent with previous observations, indicating that the magneto-ionic environment is stable. If the source is in a binary system, such stability suggests it may host a weakly magnetized companion. Crucially, we firstly observe clear evidence of a cyclotron absorption feature in one radio pulse, a signature rarely observed in radio sources. This feature allows us to infer that the magnetic field strength at the absorption site has a lower limit of tens of Gauss, which is necessary for the phenomenon to occur. This characteristic can be explained in a scenario where GPM 1839-10 possesses a weakly magnetized companion star.

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Cite This Study

Men et al. (2026) studied this question.

synapsesocial.com/papers/6a0021b7c8f74e3340f9ca55https://doi.org/10.1007/s11433-025-2937-0
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