Do they repeat? Monitoring 36 non-repeating FRBs with FAST
Abstract
The origin of fast radio bursts (FRBs), highly energetic, millisecond-duration radio pulses originating from beyond our galaxy, remains unknown. Observationally, FRBs are classified as non-repeating or repeating, however, this classification is complicated by limited observing time and sensitivity constraints, which may result in some repeating FRBs being misidentified as non-repeating. To address this issue, we adopt both empirical and machine-learning techniques from previous studies to identify candidates that may have been misclassified. We conducted follow-up observations of 36 such candidates, each observed for 10 minutes using the Five-hundred-meter Aperture Spherical Telescope (FAST). No radio bursts exceeding a signal-to-noise ratio of 7 were detected, with a typical 7 sigma fluence limit of ~0.013 Jy ms. We constrain the repetition rates of these sources using two statistical models of FRB occurrence. Combining our FAST non-detections with prior observations, we derive upper limits on the repetition rates of ~- hr under a Poisson process, and ~- hr under a Weibull process. This work presents one of the most stringent upper limits on FRB repetition rates to date, based on a sample size five times larger than those used in previous studies.
Keywords
Cite
@article{arxiv.2506.03564,
title = {Do they repeat? Monitoring 36 non-repeating FRBs with FAST},
author = {Yuri Uno and Tetsuya Hashimoto and Tomotsugu Goto and Shinnosuke Hisano and Yi Hang Valerie Wong and Arthur Chen and Sujin Eie and Simon C. -C. Ho and James O. Chibueze and Yu-Wei Lin and Seong Jin Kim and Tzu-Yin Hsu and Poya Wang and Pei Wang and Murthadza Aznam},
journal= {arXiv preprint arXiv:2506.03564},
year = {2025}
}
Comments
16 pages, 11 figure, accepted for publication in MNRAS. A recording of the oral presentation at TPS 2024 is available at: https://www.youtube.com/watch?v=SSxDKeOedHc