Scintillation can explain the spectral structure of the bright radio burst from SGR 1935+2154
arXiv:2006.13184 · doi:10.3847/2041-8213/abaa40
Abstract
The discovery of a fast radio burst (FRB) associated with a magnetar in the Milky Way by the Canadian Hydrogen Intensity Mapping Experiment FRB collaboration (CHIME/FRB) and the Survey for Transient Astronomical Radio Emission 2 (STARE2) has provided an unprecedented opportunity to refine FRB emission models. The burst discovered by CHIME/FRB shows two components with different spectra. We explore interstellar scintillation as the origin for this variation in spectral structure. Modeling a weak scattering screen in the supernova remnant associated with the magnetar, we find that a superluminal apparent transverse velocity of the emission region of is needed to explain the spectral variation. Alternatively, the two components could have originated from independent emission regions spaced by km. These scenarios may arise in "far-away" models where the emission originates from well beyond the magnetosphere of the magnetar (for example through a synchrotron-maser mechanism set up by an ultra-relativistic radiative shock), but not in "close-in" models of emission from within the magnetosphere. If further radio observations of the magnetar confirm scintillation as the source for the observed variation in spectral structure, this scattering model thus constrains the location of the emission region.
12 pages, 1 figure, 1 table. Submitted to ApJL
References in corpus (25)
- A census of baryons in the Universe from localized fast radio bursts
- Fast radio bursts as synchrotron maser emission from decelerating relativistic blast waves
- INTEGRAL discovery of a burst with associated radio emission from the magnetar SGR 1935+2154
- A Second Source of Repeating Fast Radio Bursts
- The magnetic field and turbulence of the cosmic web measured using a brilliant fast radio burst
- Observations of Fast Radio Bursts at Frequencies down to 400 Megahertz
- High time resolution and polarisation properties of ASKAP-localised fast radio bursts
- Repeating Fast Radio Bursts from Magnetars with Low Magnetospheric Twist
- The magnetar 1E 1547.0-5408: radio spectrum, polarimetry, and timing
- Radio emission evolution, polarimetry and multifrequency single pulse analysis of the radio magnetar PSR J1622-4950
- Detection of Repeating FRB 180916.J0158+65 Down to Frequencies of 300 MHz
- The variable radio-to-X-ray spectrum of the magnetar XTE J1810-197
- Scattering analysis of LOFAR pulsar observations
- Rapid interstellar scintillation of PKS B1257-326: two-station pattern time delays and constraints on scattering and microarcsecond source structure
- Radio continuum and polarization study of SNR G57.2+0.8 associated with magnetar SGR1935+2154
- Simultaneous multi-telescope observations of FRB 121102
- Five new real-time detections of Fast Radio Bursts with UTMOST
- Faraday conversion and magneto-ionic variations in Fast Radio Bursts
- Conversion Measure of Faraday Rotation-Conversion with application to Fast Radio Bursts
- An X-Ray Burst from a Magnetar Enlightening the Mechanism of Fast Radio Bursts
- Locating the intense interstellar scattering towards the inner Galaxy
- The synchrotron maser emission from relativistic magnetized shocks: Dependence on the pre-shock temperature
- Fast Radio Bursts from reconnection events in magnetar magnetospheres
- Probing pulsar scattering between 120 and 280 MHz with the MWA
- A unified picture of Galactic and cosmological fast radio bursts
Cited by in corpus (12)
- The Physics of Fast Radio Bursts
- Magnetospheric curvature radiation by bunches as emission mechanism for repeating fast radio bursts
- Constraining Galaxy Haloes from the Dispersion and Scattering of Fast Radio Bursts and Pulsars
- The Thousand-Pulsar-Array programme on MeerKAT III: Giant pulse characteristics of PSR J05406919
- An analysis of the time-frequency structure of several bursts from FRB121102 detected with MeerKAT
- Scintillation timescale measurement of the highly active FRB20201124A
- Evidence of a shared spectro-temporal law between sources of repeating fast radio bursts
- A Toy Model for the Time-Frequency Structure of Fast Radio Bursts: Implications for the CHIME Burst Dichotomy
- Fast Radio Bursts
- Scintillometry of Fast Radio Bursts: Resolution effects in two-screen models
- Observational effects of banded repeating FRBs
- Multi-Wavelength Constraints on the Outflow Properties of the Extremely Bright Millisecond Radio Bursts from the Galactic Magnetar SGR 1935+2154