The dispersion measure and scattering of Fast Radio Bursts: contributions from multi-components, and clues for the intrinsic properties
Jian-Feng Mo, Weishan Zhu, Long-Long Feng

TL;DR
This study models the dispersion measure and scattering of FRBs using a comprehensive approach, revealing insights into their origins, energy distribution, and host galaxy properties, with implications for estimating their redshifts.
Contribution
It introduces a combined model of FRB populations and environments, integrating simulations and observations to better understand FRB properties and improve redshift estimation methods.
Findings
The model reproduces the DM and $ au$ distributions in the CHIME/FRB catalog.
Estimated the fraction of FRBs tracing star formation as approximately 58%.
Redshift estimates using DM and DM-$ au$ methods have RMS errors around 0.11-0.12.
Abstract
Fast radio bursts (FRBs) are luminous, millisecond-duration transients that offer great potential for probing the universe, yet their physical origins remain unclear. The dispersion measure (DM) and scattering time () distributions provide key insights into FRBs' properties, including source population, redshift, and energy distribution. We use a simplified model of FRB source population and intrinsic Schechter function-like energy distribution, coupled with a thorough assessment of various contributors to dispersion and scattering, to replicate the joint distribution of DM and in the CHIME/FRB catalog. A mixed FRB source population, including both young and old progenitors, is considered. Contributions to the DM and from interstellar medium (ISM), circumgalactic medium (CGM) within host and foreground halos are informed by the IllustrisTNG simulation, while…
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Taxonomy
Topicsearthquake and tectonic studies · Seismic Imaging and Inversion Techniques · Medical Imaging and Analysis
