Implications of a "Fast Radio Burst" from a Galactic Magnetar
arXiv:2005.05283 · doi:10.3847/2041-8213/abac57
Abstract
A luminous radio burst was recently detected in temporal coincidence with a hard X-ray flare from the Galactic magnetar SGR 1935+2154 with a time and frequency structure consistent with cosmological fast radio bursts (FRB) and a fluence within a factor of of the least energetic extragalactic FRB previously detected. Although active magnetars are commonly invoked FRB sources, several distinct mechanisms have been proposed for generating the radio emission which make different predictions for the accompanying higher frequency radiation. We show that the properties of the coincident radio and X-ray flares from SGR 1935+2154, including their approximate simultaneity and relative fluence , as well as the duration and spectrum of the X-ray emission, are consistent with extant predictions for the synchrotron maser shock model. Rather than arising from the inner magnetosphere, the X-rays are generated by (incoherent) synchrotron radiation from thermal electrons heated at the same shocks which produce the coherent maser emission. Although the rate of SGR 1935+2154-like bursts in the local universe is not sufficient to contribute appreciably to the extragalactic FRB rate, the inclusion of an additional population of more active magnetars with stronger magnetic fields than the Galactic population can explain both the FRB rate as well as the repeating fraction, however only if the population of active magnetars are born at a rate that is at least two-orders of magnitude lower than that of SGR 1935+2154-like magnetars. This may imply that the more active magnetar sources are not younger magnetars formed in a similar way to the Milky Way population (e.g. via ordinary supernovae), but instead through more exotic channels such as superluminous supernovae, accretion-induced collapse or neutron star mergers.
21 pages, 9 figures; submitted to ApJL; comments welcome!
References in corpus (31)
- A bright millisecond radio burst of extragalactic origin
- The direct localization of a fast radio burst and its host
- Long gamma-ray bursts and core-collapse supernovae have different environments
- The Host Galaxy and Redshift of the Repeating Fast Radio Burst FRB 121102
- Fast Radio Bursts
- Fast radio bursts as synchrotron maser emission from decelerating relativistic blast waves
- A repeating fast radio burst source localised to a nearby spiral galaxy
- A single fast radio burst localized to a massive galaxy at cosmological distance
- INTEGRAL discovery of a burst with associated radio emission from the magnetar SGR 1935+2154
- A fast radio burst localised to a massive galaxy
- Canadian Hydrogen Intensity Mapping Experiment (CHIME) Pathfinder
- A Multi-telescope Campaign on FRB 121102: Implications for the FRB Population
- The host galaxies and progenitors of Fast Radio Bursts localized with the Australian Square Kilometre Array Pathfinder
- A sample of low energy bursts from FRB 121102
- FRB 121102 is coincident with a star forming region in its host galaxy
- A "Cosmic Comb" Model of Fast Radio Bursts
- Repeating Fast Radio Bursts from Magnetars with Low Magnetospheric Twist
- A long-period, violently-variable X-ray source in a young SNR
- Formation Rates and Evolution Histories of Magnetars
- The prevalence of repeating fast radio bursts
- The synchrotron maser emission from relativistic shocks in Fast Radio Bursts: 1D PIC simulations of cold pair plasmas
- Zooming In on the Progenitors of Superluminous Supernovae With the HST
- Radio continuum and polarization study of SNR G57.2+0.8 associated with magnetar SGR1935+2154
- A comparative study of host galaxy properties between Fast Radio Bursts and stellar transients
- Statistical properties magnetar bursts and FRB 121102
- STARE2: Detecting Fast Radio Bursts in the Milky Way
- Are Fast Radio Bursts Made By Neutron Stars?
- The multiwavelength counterparts of fast radio bursts
- A Revised Host Galaxy Association for GRB 020819B: A High-Redshift Dusty Starburst, Not a Low-Redshift Gas-Poor Spiral
- Comparative study of the inial spikes of SGR giant flares in 1998 and 2004 observed with GEOTAIL: Do magnetospheric instabilities trigger large scale fracturing of magnetar's crust?
- Learning About the Magnetar Swift J1834.9-0846 from its Wind Nebula
Cited by in corpus (26)
- The Physical Mechanisms of Fast Radio Bursts
- The Physics of Fast Radio Bursts
- Plasmoid ejection by Alfvén waves and the fast radio bursts from SGR 1935+2154
- Pair separation in parallel electric field in magnetar magnetosphere and narrow spectra of fast radio bursts
- Temporal Scattering, Depolarization, and Persistent Radio Emission from Magnetized Inhomogeneous Environments Near Repeating Fast Radio Burst Sources
- Exploring the epoch of hydrogen reionization using FRBs
- Quasi-periodic oscillations of the X-ray burst from the magnetar SGR J1935+2154 and associated with the fast radio burst FRB 200428
- The synchrotron maser emission from relativistic magnetized shocks: Dependence on the pre-shock temperature
- An analysis of the time-frequency structure of several bursts from FRB121102 detected with MeerKAT
- Multiwavelength observations of Fast Radio Bursts
- A magnetar parallax
- Deep optical observations contemporaneous with emission from the periodic FRB 180916.J0158+65
- "Slow" Radio Bursts from Galactic Magnetars?
- The first 7 months of the 2020 X-ray outburst of the magnetar SGR J1935+2154
- Double-peaked Pulse Profile of FRB 200428: Synchrotron Maser Emission from Magnetized Shocks Encountering a Density Jump
- Constraining the X-ray - Infrared spectral index of second-timescale flares from SGR1935+2154 with Palomar Gattini-IR
- Multi-messenger astronomy with INTEGRAL
- A maximum likelihood estimate of the parameters of the FRB population
- When Outliers Are Different
- Repeating Fast Radio Bursts from Pulsar-Asteroid Belt Collisions: Frequency Drifting and Polarization
- Simultaneous view of the FRB~180301 with FAST and NICER during a bursting phase
- Free-free absorption in hot relativistic flows: application to fast radio bursts
- AT2020hur: A Possible Optical Counterpart of FRB 180916B
- Optical Transients from Fast Radio Bursts Heating Companion Stars in Close Binary Systems
- Limits on the hard X-ray emission from the periodic fast radio burst FRB 180916.J0158+65
- X-ray and Radio Bursts from the Magnetar 1E1547.0-5408