Three-dimensional relativistic pair plasma reconnection with radiative feedback in the Crab Nebula
arXiv:1311.2605 · doi:10.1088/0004-637X/782/2/104
Abstract
The discovery of rapid synchrotron gamma-ray flares above 100 MeV from the Crab Nebula has attracted new interest in alternative particle acceleration mechanisms in pulsar wind nebulae. Diffuse shock-acceleration fails to explain the flares because particle acceleration and emission occur during a single or even sub-Larmor timescale. In this regime, the synchrotron energy losses induce a drag force on the particle motion that balances the electric acceleration and prevents the emission of synchrotron radiation above 160 MeV. Previous analytical studies and 2D particle-in-cell (PIC) simulations indicate that relativistic reconnection is a viable mechanism to circumvent the above difficulties. The reconnection electric field localized at X-points linearly accelerates particles with little radiative energy losses. In this paper, we check whether this mechanism survives in 3D, using a set of large PIC simulations with radiation reaction force and with a guide field. In agreement with earlier works, we find that the relativistic drift kink instability deforms and then disrupts the layer, resulting in significant plasma heating but few non-thermal particles. A moderate guide field stabilizes the layer and enables particle acceleration. We report that 3D magnetic reconnection can accelerate particles above the standard radiation reaction limit, although the effect is less pronounced than in 2D with no guide field. We confirm that the highest energy particles form compact bunches within magnetic flux ropes, and a beam tightly confined within the reconnection layer, which could result in the observed Crab flares when, by chance, the beam crosses our line of sight.
16 pages, 16 figures, Accepted for publication in The Astrophysical Journal
References in corpus (8)
- Fast TeV variability in blazars: jets in a jet
- MAGIC discovery of VHE Emission from the FSRQ PKS 1222+21
- Gamma-ray flares from the Crab Nebula
- Discovery of Powerful Gamma-Ray Flares from the Crab Nebula
- Radiation Reaction Effects on Radiation Pressure Acceleration
- The Role of the Guide Field in Relativistic Pair Plasma Reconnection
- Variable gamma-ray emission from the Crab Nebula: short flares and long "waves"
- The magnetic field topology in the reconnecting pulsar magnetosphere
Cited by in corpus (91)
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- Relativistic Reconnection: an Efficient Source of Non-Thermal Particles
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- The extent of power-law energy spectra in collisionless relativistic magnetic reconnection in pair plasmas
- Non-thermal particle acceleration in collisionless relativistic electron-proton reconnection
- 3D Turbulent Reconnection: Theory, Tests and Astrophysical Implications
- Modeling high-energy pulsar lightcurves from first principles
- Plasmoids in relativistic reconnection, from birth to adulthood: first they grow, then they go
- Particle acceleration in axisymmetric pulsar current sheets
- Relativistic magnetic reconnection in pair plasmas and its astrophysical applications
- Nonthermal Particle Acceleration in 3D Relativistic Magnetic Reconnection in Pair Plasma
- Radiative magnetic reconnection near accreting black holes
- Pulsar-Wind Nebulae: Recent Progress in Observations and Theory
- The Steady Growth of the High-Energy Spectral Cutoff in Relativistic Magnetic Reconnection
- Relativistic Magnetic Reconnection in Electron-Positron-Proton Plasmas: Implications for Jets of Active Galactic Nuclei
- Gamma-ray flares in the Crab Nebula: A case of relativistic reconnection?
- On the distribution of particle acceleration sites in plasmoid-dominated relativistic magnetic reconnection
- Kinetic Simulations of Radiative Magnetic Reconnection in the Coronae of Accreting Black Holes
- Relativistic magnetic reconnection in collisionless ion-electron plasmas explored with particle-in-cell simulations
- Dissipation of the striped pulsar wind
- Dissipation of the striped pulsar wind and non-thermal particle acceleration: 3D PIC simulations
- Magnetoluminescence
- Cosmic Ray Origins: An Introduction
- Kinetic study of radiation-reaction-limited particle acceleration during the relaxation of unstable force-free equilibria
- PIC methods in astrophysics: Simulations of relativistic jets and kinetic physics in astrophysical systems
- Properties of the First-order Fermi acceleration in fast magnetic reconnection driven by turbulence in collisional MHD flows
- Particle Injection and Nonthermal Particle Acceleration in Relativistic Magnetic Reconnection
- Interpreting Crab Nebula synchrotron spectrum: two acceleration mechanisms
- Reconnection and particle acceleration in 3D current sheet evolution in moderately-magnetized astrophysical pair plasma
- Jets from Tidal Disruption Events
- Magnetic energy dissipation and gamma-ray emission in energetic pulsars
- Particle acceleration in kink-unstable jets
- Kinetic turbulence in shining pair plasma: intermittent beaming and thermalization by radiative cooling
- Resistive relativistic MHD simulations of astrophysical jets
- Crab flares due to turbulent dissipation of the pulsar striped wind
- Images of magnetospheric reconnection-powered radiation around supermassive black holes
- A magnetic reconnection model for explaining the multi-wavelength emission of the microquasars Cyg X-1 and Cyg X-3
- Polarimetric signatures of hot spots in black hole accretion flows
- Turbulent magnetic relaxation in pulsar wind nebulae
- Radiative Magnetic Reconnection in Astrophysics
- Reconnection-driven flares in 3D black hole magnetospheres -- A scenario for hot spots around Sagittarius A*
- The imprint of pulsar parameters on the morphology of Pulsar Wind Nebulae
- Kinetic Beaming in Radiative Relativistic Magnetic Reconnection: A Mechanism for Rapid Gamma-Ray Flares in Jets
- Bright gamma-ray flares powered by magnetic reconnection in QED-strength magnetic fields
- Relativistic Magnetic Reconnection in Astrophysical Plasmas: A Powerful Mechanism of Nonthermal Emission
- Modelling Jets, Tori and Flares in Pulsar Wind Nebulae
- Beaming of particles and synchrotron radiation in relativistic magnetic reconnection
- Kinetic simulations of the lowest-order unstable mode of relativistic magnetostatic equilibria
- Relativistic Nonthermal Particle Acceleration in Two-Dimensional Collisionless Magnetic Reconnection
- Relativistic Tearing and Drift-kink Instabilities in Two-fluid Simulations
- GRBs from Magnetic Reconnection: Variability and Robustness of Lightcurves
- High-energy synchrotron flares powered by strongly radiative relativistic magnetic reconnection: 2D and 3D PIC simulations
- Relativistic magnetic reconnection driven by a laser interacting with a micro-scale plasma slab
- Kinetic simulations of relativistic magnetic reconnection with synchrotron and inverse Compton cooling
- Particle acceleration and synchrotron self-Compton emission in blazar jets I : an application to the quiescent emission
- Explosive X-point collapse in relativistic magnetically-dominated plasma
- The impulsive phase of magnetar giant flares: assessing linear tearing as the trigger mechanism
- Relativistic Asymmetric Reconnection
- Physics of the saturation of particle acceleration in relativistic magnetic reconnection
- Electron Acceleration in Pulsar-Wind Termination Shocks: An Application to the Crab Nebula Gamma-Ray Flares
- Turbulent model of Crab nebula radiation
- Two-stage electron acceleration by 3D collisionless guide field magnetic reconnection
- Synchrotron Pair Production Equilibrium in Relativistic Magnetic Reconnection
- Formation of giant plasmoids at the pulsar wind termination shock: A possible origin of the inner-ring knots in the Crab Nebula
- Particle Acceleration in Pulsar Wind Nebulae: PIC modelling
- The effect of cooling on particle trajectories and acceleration in relativistic magnetic reconnection
- Theory and Applications of Non-Relativistic and Relativistic Turbulent Reconnection
- The Equatorial Current Sheet and other interesting features of the Pulsar Magnetosphere
- Radiative kinetic simulations of steady-state relativistic plasmoid magnetic reconnection
- Radiation rebound and Quantum Splash in Electron-Laser Collision
- Synchrotron Polarization Radiative Transfer: Relativistic Thermal Electrons Contribution
- Energy Partition of Thermal and Nonthermal Particles in Magnetic Reconnection
- What brakes the Crab pulsar?
- Thermal synchrotron radiation from RRMHD simulations of the double tearing mode reconnection - Application to the Crab flares
- Electron and proton energization in 3D reconnecting current sheets in semirelativistic plasma with guide magnetic field
- Synchrotron Polarization of Relativistic Thermal Electrons
- Pulsar striped winds
- Maximally-hard spectra from diffusive shock-acceleration in pulsar-wind nebulae
- Particle-in-Cell Simulations of Relativistic Magnetic Reconnection with Advanced Maxwell Solver Algorithms
- The impact of resistive electric fields on particle acceleration in reconnection layers
- Observation of Fermi acceleration with cold atoms
- A kinetic model of jet-corona coupling in accreting black holes
- An extreme particle accelerator powered by pulsar PSR J1849-0001
- Scaling of Magnetic Dissipation and Particle Acceleration in ABC Fields
- Current sheet formation under radiative cooling
- Time-Dependent Electron Acceleration in Pulsar Wind Termination Shocks: Application to the 2007 September Crab Nebula Gamma-Ray Flare
- Particle injection in three-dimensional relativistic magnetic reconnection
- Superdense beaming of axion dark matter in the vicinity of the light cylinder of pulsars
- Nonuniform Particle Injection into Black Hole Jets by Radiative Magnetic Reconnection
- Pair-Regulated Klein-Nishina Relativistic Magnetic Reconnection with Applications to Blazars and Accreting Black Holes
- Time-Dependent Electron Acceleration in Pulsar-Wind Termination Shocks: Application to the 2011 April Crab Nebula Gamma-Ray Flare