An analysis of the time-frequency structure of several bursts from FRB121102 detected with MeerKAT
E. Platts, M. Caleb, B. W. Stappers, R. A. Main, A. Weltman, J. P., Shock, M. Kramer, M. C. Bezuidenhout, F. Jankowski, V. Morello, A. Possenti,, K. M. Rajwade, L. Rhodes, J. Wu

TL;DR
This paper analyzes the complex time-frequency structure of FRB 121102 bursts detected with MeerKAT, revealing deviations from cold plasma dispersion, possible plasma lensing effects, and discussing implications for dispersion measure estimation.
Contribution
It provides the first application of autocorrelation functions to FRB analysis and investigates plasma lensing as a cause for burst morphology variations.
Findings
Detection of bifurcating structures at 1250 MHz.
Identification of differential dispersion measures across frequencies.
Proposal of plasma lensing as a plausible explanation for observed features.
Abstract
We present a detailed study of the complex time-frequency structure of a sample of previously reported bursts of FRB 121102 detected with the MeerKAT telescope in September 2019. The wide contiguous bandwidth of these observations have revealed a complex bifurcating structure in some bursts at MHz. When de-dispersed to their structure-optimised dispersion measures, two of the bursts show a clear deviation from the cold plasma dispersion relationship below MHz. We find a differential dispersion measure of pc cm between the lower and higher frequency regions of each burst. We investigate the possibility of plasma lensing by Gaussian lenses of AU in the host galaxy, and demonstrate that they can qualitatively produce some of the observed burst morphologies. Other possible causes for the observed frequency dependence, such as Faraday delay, are…
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