paper

First Constraints on Compact Dark Matter from Fast Radio Burst Microstructure

arXiv:2002.12533 · doi:10.3847/1538-4357/aba7bb

Abstract

Despite existing constraints, it remains possible that up to of all dark matter is comprised of compact objects, such as the black holes in the 10-100\,M range whose existence has been confirmed by LIGO. The strong gravitational lensing of transients such as FRBs and GRBs has been suggested as a more sensitive probe for compact dark matter than intensity fluctuations observed in microlensing experiments. Recently ASKAP has reported burst substructure down to s timescales in FRBs in the redshift range . We investigate here the implications of this for the detectability of compact dark matter by FRBs. We find that a sample size of FRBs would be required to constrain compact dark matter to less than the existing 35 limit with 95 confidence, if it were distributed along Gpc-long FRB sightlines through the cosmic web. Conversely, existing constraints on the fraction of compact dark matter permit as many as 1 in of all FRBs to exhibit micro-lensed burst structure. Approximately FRBs intercepting halos within kpc would be required to exclude the fraction of compact dark matter in each intercepted halo to a similar level. Furthermore, we consider the cumulative effects of lensing of the FRB signal by a macroscopic dark matter distribution. We conclude that lensing from a uniform distribution of compact objects is likely not observable, but suggest that FRBs may set meaningful limits on power-law distributions of dark matter.

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