A mechanism for fast radio bursts
arXiv:1512.03772 · doi:10.1103/PhysRevD.93.023001
Abstract
Fast radio bursts are mysterious transient sources likely located at cosmological distances. The derived brightness temperatures exceed by many orders of magnitude the self-absorption limit of incoherent synchrotron radiation, implying the operation of a coherent emission process. We propose a radiation mechanism for fast radio bursts where the emission arises from collisionless Bremsstrahlung in strong plasma turbulence excited by relativistic electron beams. We discuss possible astrophysical scenarios in which this process might operate. The emitting region is a turbulent plasma hit by a relativistic jet, where Langmuir plasma waves produce a concentration of intense electrostatic soliton-like regions (cavitons). The resulting radiation is coherent and, under some physical conditions, can be polarised and have a power-law distribution in energy. We obtain radio luminosities in agreement with the inferred values for fast radio bursts. The timescale of the radio flare in some cases can be extremely fast, of the order of s. The mechanism we present here can explain the main features of fast radio bursts and is plausible in different astrophysical sources, such as gamma-ray bursts and some Active Galactic Nuclei.
6 pages, 1 figure. Accepted for publication in Phys. Rev. D
References in corpus (6)
- A bright millisecond radio burst of extragalactic origin
- Fast Radio Burst Discovered in the Arecibo Pulsar ALFA Survey
- Fast TeV variability in blazars: jets in a jet
- The Effect of Porosity on X-ray Emission Line Profiles from Hot-Star Winds
- The Arecibo Fast Radio Burst: Dense Circum-burst Medium
- Low energy Langmuir cavitons: asymptotic limit of weak turbulence
Cited by in corpus (40)
- The direct localization of a fast radio burst and its host
- Fast Radio Bursts
- A Living Theory Catalogue for Fast Radio Bursts
- The Repeating Fast Radio Burst FRB 121102 as Seen on Milliarcsecond Angular Scales
- Millisecond Magnetar Birth Connects FRB 121102 to Superluminous Supernovae and Long Duration Gamma-ray Bursts
- The Physics of Fast Radio Bursts
- A "Cosmic Comb" Model of Fast Radio Bursts
- On the radiation mechanism of repeating fast radio bursts
- On the normalised FRB luminosity function
- Feedback by Massive Black Holes in Dwarf Galaxies
- On the origin of fast radio bursts (FRBs)
- Fast radio bursts and their gamma-ray or radio afterglows as Kerr-Newman black hole binaries
- FRB 121102: A repeatedly combed neutron star by a nearby low-luminosity accreting super-massive black hole
- Fast Radio Bursts
- On the energy and redshift distributions of fast radio bursts
- FRB as Products of Accretion Disc Funnels
- Luminosity-duration relations and luminosity functions of repeating and non-repeating fast radio bursts
- A model for the repeating FRB 121102 in the AGN scenario
- Are FRB Wandering Narrow Beams?
- Probing motion of fast radio burst sources by timing strongly lensed repeaters
- Synthesizing the intrinsic FRB population using frbpoppy
- Revealing the cosmic reionisation history with fast radio bursts in the era of Square Kilometre Array
- FRB Energetics and Sources
- Limits on the ultra-bright Fast Radio Burst population from the CHIME Pathfinder
- Fast Radio Bursts from the collapse of Strange Star Crusts
- Radio Properties of Rotating Radio Transients: Single Pulse Spectral and Wait Time Analyses
- Gravitational-Wave Constraints on the Progenitors of Fast Radio Bursts
- Radio-interferometric monitoring of FRB 131104: A coincident AGN flare, but no evidence for a cosmic fireball
- Constraining Redshifts of Unlocalised Fast Radio Bursts
- Synchrotron maser from weakly magnetised neutron stars as the emission mechanism of fast radio bursts
- Luminosity-duration relation of fast radio bursts
- Statistical properties of the repeating fast radio burst source FRB 121102
- A flat spectrum candidate for a track-type high energy neutrino emission event, the case of blazar PKS 0723-008
- A search for gamma-ray prompt emission associated with the Lorimer Burst FRB010724
- Observing superluminous supernovae and long gamma ray bursts as potential birthplaces of repeating fast radio bursts
- Periodic Fast Radio Bursts from Young Neutron Stars
- Statistical properties of fast radio bursts elucidate their origins: magnetars are favoured over gamma-ray bursts
- Streaming instability in neutron star magnetospheres: No indication of soliton-like waves
- Clumpy jets from black hole-massive star binaries as engines of Fast Radio Bursts
- The BINGO/ABDUS Project: Forecast for cosmological parameters from a mock Fast Radio Bursts survey