Comprehensive analysis of the Apertif Fast Radio Burst sample: similarities with young, energetic neutron stars
In\'es Pastor-Marazuela, Joeri van Leeuwen, Anna Bilous, Liam Connor,, Yogesh Maan, Leon Oostrum, Emily Petroff, Dany Vohl, Kelley M. Hess, Emanuela, Orr\`u, Alessio Sclocco, and Yuyang Wang

TL;DR
This study presents a comprehensive analysis of 24 FRBs detected by the Apertif survey, revealing their complex environments, polarization properties, and similarities to young, energetic neutron stars, advancing understanding of FRB origins.
Contribution
The paper provides the first detailed characterization of a large FRB sample from Apertif, highlighting environmental complexity and neutron star-like properties, and reports the all-sky FRB rate at 1370 MHz.
Findings
Detection of 18 new FRBs and analysis of 24 total bursts.
Identification of host galaxy candidates for five FRBs.
Observation of high scattering and rotation measures indicating complex environments.
Abstract
Understanding the origin of fast radio bursts (FRBs) has become the main science driver of recent dedicated FRB surveys. Between July 2019 and February 2022, we carried out ALERT, an FRB survey at 1370 MHz using the Apertif instrument installed at the Westerbork Synthesis Radio Telescope (WSRT). Here we report the detection of 18 new FRBs, and we study the properties of the entire 24 burst sample detected during the survey. For five bursts, we identify host galaxy candidates with >50% probability association. We observe an average linear polarisation fraction of 43% and an average circular polarisation fraction consistent with 0%. A third of the FRBs display multiple components. The sample next reveals a population of highly scattered bursts, which is most likely to have been produced in the immediate circumburst environment. Furthermore, two FRBs show evidence for high rotation…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Space Satellite Systems and Control · Mechanics and Biomechanics Studies
