Fast radio bursts, magnetars and earthquakes: their "family feud"?
arXiv:2606.01855 · doi:10.1007/s11433-026-3030-x
Abstract
Fast radio bursts (FRBs) are millisecond-duration cosmic transients whose origin remains elusive. Competing models invoke either earthquake-like processes or flare-like mechanisms. To discriminate between these scenarios, we develop a novel diagnostic, the Pincus-Lyapunov diagram (PLD), to characterize the energetic transients in the stochasticity-chaos phase space. We compile burst sequences from five representative FRBs (FRB 20121102A, FRB 20190520B, FRB 20201124A, FRB 20220912A, and FRB 20240114A), together with those from magnetar flares (SGR J15505418, SGR J0501+4516, SGR 180620, SGR 1900+14, and SGR J1935+2154), pulsar glitches, solar flares, and earthquakes, and map them onto the PLD for comparative analysis. The resulting diagram shows that FRBs occupy a distinct region of the phase space. Specifically, a permutation test reveals a statistically significant difference in the distributions of magnetar flares and pulsar glitches compared to those of repeating FRBs (-value ). To examine whether temporal variations in source activity can shift a repeater's position in this phase space, we analyze the time evolution of the most prolific repeater, FRB~20240114A. For this repeating FRB, both Pincus Index and Lyapunov Exponent demonstrate statistically stable behaviour over the eight-month observation session, with Augmented Dickey--Fuller tests yielding and , respectively. By assembling the most comprehensive dataset to date, our work indicates that the trigger mechanisms of repeating FRBs are likely to be distinct from those driving magnetar flares, pulsar glitches, solar flares, and earthquakes.
12 pages, 3 figures, accepted for publication in Science China Physics, Mechanics & Astronomy
References in corpus (36)
- A bright millisecond radio burst of extragalactic origin
- A fast radio burst associated with a Galactic magnetar
- A bright millisecond-duration radio burst from a Galactic magnetar
- A repeating fast radio burst associated with a persistent radio source
- A bimodal burst energy distribution of a repeating fast radio burst source
- The Physics of Fast Radio Bursts
- A fast radio burst source at a complex magnetised site in a barred galaxy
- Repeating behaviour of FRB 121102: periodicity, waiting times and energy distribution
- No pulsed radio emission during a bursting phase of a Galactic magnetar
- Magnetic field reversal in the turbulent environment around a repeating fast radio burst
- On the influence of time and space correlations on the next earthquake magnitude
- Repeating fast radio burst 20201124A originates from a magnetar/Be star binary
- The NICER View of the 2020 Burst Storm and Persistent Emission of SGR 1935+2154
- Fast radio bursts and their high-energy counterpart from magnetar magnetospheres
- FAST observations of an extremely active episode of FRB 20201124A: II. Energy Distribution
- The Five Year Fermi/GBM Magnetar Burst Catalog
- Plasmoid ejection by Alfvén waves and the fast radio bursts from SGR 1935+2154
- A radio pulsar phase from SGR J1935+2154 provides clues to the magnetar FRB mechanism
- Energy functions of fast radio bursts derived from the first CHIME/FRB catalogue
- The FRB 20121102A November rain in 2018 observed with the Arecibo Telescope
- Simultaneous multi-telescope observations of FRB 121102
- Arecibo observations of a burst storm from FRB 20121102A in 2016
- A burst storm from the repeating FRB 20200120E in an M81 globular cluster
- Electromagnetic fireworks: Fast radio bursts from rapid reconnection in the compressed magnetar wind
- FAST observations of an extremely active episode of FRB 20201124A: IV. Spin Period Search
- The Weibull - Log Weibull Distribution for Interoccurrence Times of Earthquakes
- A Magnetar-Asteroid Impact Model for FRB 200428 Associated with an X-ray Burst from SGR 1935+2154
- On the rate of crustal failures in young magnetars
- Fast radio bursts trigger aftershocks resembling earthquakes, but not solar flares
- The arrival time and energy of FRBs traverse the time-energy bivariate space like a Brownian motion
- Similarity to earthquakes again: periodic radio pulses of the magnetar SGR 1935+2154 are accompanied by aftershocks like fast radio bursts
- Time-energy correlations in solar flare occurrence
- Statistical properties and lensing effect on the repeating fast radio burst FRB 180916.J0158+65
- Quantifying the randomness and scale invariance of the repeating fast radio bursts
- A comprehensive search for Long and Short Periodic Features from an Extremely Active Cycle of FRB 20240114A
- The energy structure function of fast radio bursts supports a stochastic origin model