Direct Emission of Strong Radio Pulses During Magnetar Flares
arXiv:2209.11136 · doi:10.1093/mnras/stac3565
Abstract
The emission of intense radio pulses by flaring magnetars is investigated. Small-scale current gradients can be imprinted into a strongly magnetized outflow by the same processes that source fireball radiation in the closed magnetosphere. This structure arises from a combination of crustal yielding, internal tearing, and turbulent cascade. We consider the quasi-linear development of weak, small-scale currents as (i) they are stretched out and frozen by relativistic expansion and then (ii) pass through a shock. In particular, we derive the amplitudes of the ordinary and fast waves that emerge downstream of a relativistically magnetized shock in response to a mode that is frozen into the upstream flow (a frozen Alfvén wave or entropy wave). An upstream mode with comoving wavelength exceeding the skin depth can linearly convert to a secondary mode propagating above the plasma frequency. A simple and accurate treatment of shocks with extreme magnetization is developed, and the formation of internal shocks in the outflow from a bursting, rotating magnetar is outlined. The emission process described here does not require a strong shock or cool pairs (in contrast with the electromagnetic maser shock instability). In some cases, a high-frequency wave is reflected back to the observer, but with a minuscule amplitude that makes it subdominant to other emission channels. The dominant secondary electromagnetic mode is superluminal at emission, is subject to weak induced scattering within the outflow, and can reach the observer in the radio band.
MNRAS in press, 24 pages, 4 figures. Expanded comparison with maser shock instability, treatment of MHD cascade in relativistic outflow
References in corpus (27)
- A fast radio burst associated with a Galactic magnetar
- A bright millisecond-duration radio burst from a Galactic magnetar
- Fast radio bursts as synchrotron maser emission from decelerating relativistic blast waves
- Imbalanced Strong MHD Turbulence
- No pulsed radio emission during a bursting phase of a Galactic magnetar
- The synchrotron maser emission from relativistic shocks in Fast Radio Bursts: 1D PIC simulations of cold pair plasmas
- Pulsar Radio Emission Mechanism: Radio Nanoshots as a Low Frequency Afterglow of Relativistic Magnetic Reconnection
- Plasmoid ejection by Alfvén waves and the fast radio bursts from SGR 1935+2154
- Fermi/GBM View of the 2019 and 2020 Burst Active Episodes of SGR J1935+2154
- Coherent Electromagnetic Emission from Relativistic Magnetized Shocks
- Dissipation of the striped pulsar wind and non-thermal particle acceleration: 3D PIC simulations
- Electromagnetic fireworks: Fast radio bursts from rapid reconnection in the compressed magnetar wind
- Induced scattering of short radio pulses
- Can a strong radio burst escape the magnetosphere of a magnetar?
- Electrodynamics of Magnetars III: Pair Creation Processes in an Ultrastrong Magnetic Field and Particle Heating in a Dynamic Magnetosphere
- Emission of magnetar bursts and precursors of neutron star mergers
- Transparency of Fast Radio Burst Waves in Magnetar Magnetospheres
- Dynamic alignment and plasmoid formation in relativistic magnetohydrodynamic turbulence
- The synchrotron maser emission from relativistic magnetized shocks: Dependence on the pre-shock temperature
- Magnetar bursts due to Alfvén wave nonlinear breakout
- Weak Alfvénic turbulence in relativistic plasmas II: Current sheets and dissipation
- Weak Alfvénic turbulence in relativistic plasmas. Part 1. Dynamical equations and basic dynamics of interacting resonant triads
- Fermi-GBM Observations of the SGR J1935+2154 Burst Forest
- Magnetic Field Evolution in Neutron Star Crusts: Beyond the Hall Effect
- Pair Plasma in Super-QED Magnetic Fields and the Hard X-ray/Optical Emission of Magnetars
- Radio Emission of Pulsars. I. Slow Tearing of a Quantizing Magnetic Field
- The Moving Mirror model for Fast Radio Bursts
Cited by in corpus (9)
- A radio pulsar phase from SGR J1935+2154 provides clues to the magnetar FRB mechanism
- Three-dimensional dynamics of strongly twisted magnetar magnetospheres: Kinking flux tubes and global eruptions
- Fast radio bursts as precursor radio emission from monster shocks
- Relativistic coronal mass ejections from magnetars
- Contemporaneous X-ray Observations of 30 Bright Radio Bursts from the Prolific Fast Radio Burst Source FRB 20220912A
- Force-free wave interaction in magnetar magnetospheres: Computational modeling in axisymmetry
- Safety first: Stability and dissipation of line-tied force-free flux tubes in magnetized coronae
- A Target Search for Fast Radio Bursts Associated with Two Fast Blue Optical Transients: AT2018cow and CSS161010
- Superluminal Wave Activation at Relativistic Magnetized Shocks