The Long-Integration Magnetar Burst Observatory (LIMBO) is a real-time radio transient detection pipeline designed to search for dispersed fast radio bursts (FRBs) from Galactic magnetars. Deployed at the University of California, Berkeley's Leuschner Radio Observatory, LIMBO employs a 4.3m dish with a dual-polarization feed to continuously monitor a 250MHz band centred at 1475MHz. A real-time processing pipeline performs a search for dispersed transients on the summed polarizations, with detections triggering dumps of buffered voltage data to disk. Based on calibrated sensitivity measurements, synthetic signal-injection and recovery tests, and successful detection of pulses from the Crab Pulsar, we determine that LIMBO is sensitive to radio transients with fluences ≥43Jy⋅ms. Between May and August 2023, LIMBO conducted 833 hours of follow-up observations of the Galactic magnetar SGR 1935+2154, yielding 12 candidate FRB detections. If these events are true, we measure FRB-like event rates from SGR 1935+2154 of R(≥65Jy⋅ms)=112.3−54.5+81.3yr−1 and R(≥130Jy⋅ms)=17.7−15.1+40.8yr−1. Combining these results with previously reported FRBs from SGR 1935+2154, we infer a cumulative rate-fluence power-law slope of α=−0.60−0.28+0.24 in the fluence range between 10 and 106Jy⋅ms. These observations demonstrate the capability of continuous, real-time monitoring of Galactic magnetars and establish LIMBO as an effective instrument for detecting Galactic FRBs.
@article{arxiv.2603.05603,
title = {Long-Integration Magnetar Burst Observatory (LIMBO): Instrument Summary and Early FRB Rate Constraints},
author = {Darby McCauley and Aaron Parsons and Wei Liu and Wenbin Lu and Dirk Wright and Dan Werthimer},
journal= {arXiv preprint arXiv:2603.05603},
year = {2026}
}