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The physics of fast radio bursts

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TLDR
In this article, the authors summarize the basic physics of FRBs and discuss the current research progress in this area, including the observational property, propagation effect, population study, radiation mechanism, source model, and application in cosmology.
Abstract
In 2007, a very bright radio pulse was identified in the archival data of the Parkes Telescope in Australia, marking the beginning of a new research branch in astrophysics. In 2013, this kind of millisecond bursts with extremely high brightness temperature takes a unified name, fast radio burst (FRB). Over the first few years, FRBs seemed very mysterious because the sample of known events was limited. With the improvement of instruments over the last five years, hundreds of new FRBs have been discovered. The field is now undergoing a revolution and understanding of FRB has rapidly increased as new observational data increasingly accumulate. In this review, we will summarize the basic physics of FRBs and discuss the current research progress in this area. We have tried to cover a wide range of FRB topics, including the observational property, propagation effect, population study, radiation mechanism, source model, and application in cosmology. A framework based on the latest observational facts is now under construction. In the near future, this exciting field is expected to make significant breakthroughs.

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Citations
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Journal ArticleDOI

Fast radio bursts at the dawn of the 2020s

TL;DR: In this paper , the authors presented a growing, but still mysterious, population of fast radio burst (FRB) sources, 60 unique sources, 2 repeating FRBs, and only 1 identified host galaxy.
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Evolution of Neutron Star Magnetic Fields

TL;DR: In this article, the formation and evolution of the magnetic field of a neutron star is discussed, paying special attention to the field decay processes and its magnetic field properties, and a subjective list of open problems is presented.
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Periodic Activities of Repeating Fast Radio Bursts from Be/X-ray Binary Systems

TL;DR: In this article, the authors proposed that a Be/X-ray binary (BeXRB) system composed of a neutron star (NS) and a Be star with a circumstellar disk, might be the source of a repeating fast radio burst with periodic activities, and apply this model to explain the activity window of FRB 180916B.
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Coherent Inverse Compton Scattering by Bunches in Fast Radio Bursts

TL;DR: In this article , a family of model invoking coherent inverse Compton scattering (ICS) of bunched particles that may operate within or just outside of the magnetosphere of a flaring magnetar was proposed.
References
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Journal ArticleDOI

TESTS OF THE EINSTEIN EQUIVALENCE PRINCIPLE USING TeV BLAZARS

TL;DR: In this paper, the authors show that the strict limits on the differences of the parameterized post-Newtonian parameter γ values are for Mrk 421 and for MRk 501, while expanding the scope of the tested EEP energy range out to the TeV-keV range for the first time.
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Short gamma-ray bursts as a possible probe of binary neutron star mergers

TL;DR: In this paper, the properties of short gamma-ray bursts (GRBs) are studied based on the assumption that they are all connected to binary neutron star mergers, whose mechanism contains a large amount of uncertainty, and the short GRB rate, calculated using such a parametrization with a specific model of the cosmic star formation rate, is found to be quite insensitive to the value of?, but very sensitive to?.
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Synchrotron masers and fast radio bursts

TL;DR: In this article, the synchrotron stimulated emission process is used to relax the light crossing time limits, since there is no simple relation between the actual size of the source and the observed variability timescale.
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Fast radio bursts

TL;DR: Fast radio bursts (FRBs) are powerful (0.1-100 Jy) single radio pulses with durations of several milliseconds, large dispersion measures, and record high brightness temperatures suggesting coherent emission mechanism as mentioned in this paper.
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What is the recent progress on fast radio burst?

The recent progress on fast radio bursts (FRBs) is discussed in the paper, including the discovery of hundreds of new FRBs and the increasing understanding of their physics through new observational data.