A global model of particle acceleration at pulsar wind termination shocks
arXiv:2008.07253 · doi:10.1051/0004-6361/202038883
Abstract
Pulsar wind nebulae are efficient particle accelerators, and yet the processes at work remain elusive. Self-generated, microturbulence is too weak in relativistic magnetized shocks to accelerate particles over a wide energy range, suggesting that the global dynamics of the nebula may be involved in the acceleration process instead. In this work, we study the role played by the large-scale anisotropy of the transverse magnetic field profile on the shock dynamics. We performed large two-dimensional particle-in-cell simulations for a wide range of upstream plasma magnetizations. A large-scale velocity shear and current sheets form in the equatorial regions and at the poles, where they drive strong plasma turbulence via Kelvin-Helmholtz vortices and kinks. The mixing of current sheets in the downstream flow leads to efficient nonthermal particle acceleration. The power-law spectrum hardens with increasing magnetization, akin to those found in relativistic reconnection and kinetic turbulence studies. The high end of the spectrum is composed of particles surfing on the wake produced by elongated spearhead-shaped cavities forming at the shock front and piercing through the upstream flow. These particles are efficiently accelerated via the shear-flow acceleration mechanism near the Bohm limit. Magnetized relativistic shocks are very efficient particle accelerators. Capturing the global dynamics of the downstream flow is crucial to understanding them, and therefore local plane parallel studies may not be appropriate for pulsar wind nebulae and possibly other astrophysical relativistic magnetized shocks. A natural outcome of such shocks is a variable and Doppler-boosted synchrotron emission at the high end of the spectrum originating from the shock-front cavities, reminiscent of the mysterious Crab Nebula gamma-ray flares.
12 pages, 11 figures, Accepted for publication in Astronomy & Astrophysics
References in corpus (11)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Gamma-ray flares from the Crab Nebula
- Discovery of Powerful Gamma-Ray Flares from the Crab Nebula
- Magnetic field evolution in relativistic unmagnetized collisionless shocks
- Kinetic turbulence in relativistic plasma: from thermal bath to non-thermal continuum
- Heating and Non-thermal Particle Acceleration in Relativistic, Transverse Magnetosonic Shock Waves in Proton-Electron-Positron Plasmas
- Dissipation of the striped pulsar wind
- Constraints on particle acceleration sites in the Crab Nebula from relativistic MHD simulations
- Polarized synchrotron emission from the equatorial current sheet in gamma-ray pulsars
- A corrugated termination shock in pulsar wind nebulae?
- Relativistic magnetohydrodynamical simulations of the resonant corrugation of a fast shock front
Cited by in corpus (21)
- Reconnection-driven particle acceleration in relativistic shear flows
- Particle Injection and Nonthermal Particle Acceleration in Relativistic Magnetic Reconnection
- Pulsars Do Not Produce Sharp Features in the Cosmic-Ray Electron and Positron Spectra
- Formation of giant plasmoids at the pulsar wind termination shock: A possible origin of the inner-ring knots in the Crab Nebula
- Relativistic Collisionless Shocks in Inhomogeneous Magnetized Plasmas
- Prospects for ultra-high-energy particle acceleration at relativistic shocks
- Gamma-ray halos around pulsars: impact on pulsar wind physics and galactic cosmic ray transport
- Particle acceleration in an MHD-scale system of multiple current sheets
- Extreme ion acceleration at extragalactic jet termination shocks
- Investigation of the broadband emission of the gamma-ray binary HESS J0632+057 using an intrabinary shock model
- Evidence of Time-Dependent Diffusive Shock Acceleration in the 2022 September 5 Solar Energetic Particle Event
- Maximally-hard spectra from diffusive shock-acceleration in pulsar-wind nebulae
- Low-energy Injection and Nonthermal Particle Acceleration in Relativistic Magnetic Turbulence
- Streaming instability in neutron star magnetospheres: No indication of soliton-like waves
- Magnetic reconnection: an alternative explanation of radio emission in galaxy clusters
- Spatio-spectral-temporal Modelling of Two Young Pulsar Wind Nebulae
- An extreme particle accelerator powered by pulsar PSR J1849-0001
- The Potential for Hadronic Particle Acceleration in Galactic Pulsar Wind Nebulae
- Filamentation of the electromagnetic precursor in relativistic quasi-perpendicular electron-positron shocks
- Mirage Sources and Large TeV Halo-Pulsar Offsets: Exploring the Parameter Space
- Shock corrugation to the rescue of the internal shock model in microquasars: The single-scale MHD view