Crab GeV flares from corrugated termination shock
arXiv:1109.1204 · doi:10.1111/j.1365-2966.2012.20831.x
Abstract
Very high energy gamma-ray flares from the Crab nebular detected by AGILE and Fermi satellites challenge our understanding of the pulsar wind nebulae. The short duration of the flares, only few days, is particularly puzzling since it is much shorter than the dynamical times scale of the nebular. In this work we investigate analytically and via numerical simulations the electromagnetic signatures expected from the large amplitude low frequency magnetosonic waves generated within the Crab nebular which induce the corrugation perturbations of the termination shock. As a result, the oblique termination shock produces time-dependent, mildly relativistic post-shock flow. Using the relativistic MHD version of the RIEMANN code, we simulate the interaction of the termination shock with downstream perturbations. We demonstrate that mild Doppler boosting of the synchrotron emission in the post-shock flow can produce bright, short time scale flares.
References in corpus (8)
- Gamma-ray flares from the Crab Nebula
- Discovery of Powerful Gamma-Ray Flares from the Crab Nebula
- Efficient, High Accuracy ADER-WENO Schemes for Hydrodynamics and Divergence-Free Magnetohydrodynamics
- Extreme particle acceleration in magnetic reconnection layers. Application to the gamma-ray flares in the Crab Nebula
- Reconnection-Powered Linear Accelerator and Gamma-Ray Flares in the Crab Nebula
- On the origin of variable gamma-ray emission from the Crab Nebula
- On the variability of the GeV and multi-TeV gamma-ray emission from the Crab Nebula
- Local Kelvin-Helmholtz instability and synchrotron modulation in Pulsar Wind Nebulae
Cited by in corpus (25)
- Simulations of particle acceleration beyond the classical synchrotron burnoff limit in magnetic reconnection: An explanation of the Crab flares
- The surprising Crab pulsar and its nebula: A review
- Pulsar-Wind Nebulae: Recent Progress in Observations and Theory
- Gamma-ray flares in the Crab Nebula: A case of relativistic reconnection?
- Crab Nebula gamma-ray flares as relativistic reconnection minijets
- Magnetoluminescence
- Gamma-ray pulsars: a gold mine
- Chandra, Keck and VLA Observations of the Crab Nebula during the 2011-April Gamma-ray Flare
- Particle acceleration in explosive relativistic reconnection events and Crab Nebula gamma-ray flares
- A search for enhanced very high energy gamma-ray emission from the March 2013 Crab Nebula flare
- Particle acceleration in explosive relativistic reconnection events and Crab Nebula gamma-ray flares
- Rapid Gamma-ray flux variability during the 2013 March Crab Nebula flare
- Radiative Magnetic Reconnection in Astrophysics
- Characterization of the Inner Knot of the Crab: The Site of the Gamma-ray Flares?
- Probing gamma-ray emissions of Fermi-LAT pulsars with a non-stationary outer gap model
- The inner knot of the Crab nebula
- Corrugation of relativistic magnetized shock waves
- The variability of the Crab Nebula in radio: No radio counterpart to gamma-ray flares
- The hour-timescale GeV flares of PSR B1259-63 in 2017
- A corrugated termination shock in pulsar wind nebulae?
- Electron Acceleration in Pulsar-Wind Termination Shocks: An Application to the Crab Nebula Gamma-Ray Flares
- High energy gamma-ray emission from compact galactic sources in the context of observations with the next generation Cherenkov Telescope Arrays
- Relativistic magnetohydrodynamical simulations of the resonant corrugation of a fast shock front
- A systematic study of -ray flares from the Crab Nebula with Fermi-LAT: I. flare detection
- Shock corrugation to the rescue of the internal shock model in microquasars: The single-scale MHD view