Constraints on particle acceleration sites in the Crab Nebula from relativistic MHD simulations
arXiv:1502.06394 · doi:10.1093/mnras/stv498
Abstract
The Crab Nebula is one of the most efficient accelerators in the Galaxy and the only galactic source showing direct evidence of PeV particles. In spite of this, the physical process behind such effective acceleration is still a deep mystery. While particle acceleration, at least at the highest energies, is commonly thought to occur at the pulsar wind termination shock, the properties of the upstream flow are thought to be non-uniform along the shock surface, and important constraints on the mechanism at work come from exact knowledge of where along this surface particles are being accelerated. Here we use axisymmetric relativistic MHD simulations to obtain constraints on the acceleration site(s) of particles of different energies in the Crab Nebula. Various scenarios are considered for the injection of particles responsible for synchrotron radiation in the different frequency bands, radio, optical and X-rays. The resulting emission properties are compared with available data on the multi wavelength time variability of the inner nebula. Our main result is that the X-ray emitting particles are accelerated in the equatorial region of the pulsar wind. Possible implications on the nature of the acceleration mechanism are discussed.
12 pages, 7 figures, 2 tables
References in corpus (8)
- Observation of an anomalous positron abundance in the cosmic radiation
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- ECHO: an Eulerian Conservative High Order scheme for general relativistic magnetohydrodynamics and magnetodynamics
- Pulsar Wind Nebulae as Cosmic Pevatrons: A Current Sheet's Tale
- Relativistic MHD Winds from Rotating Neutron Stars
- Simulated synchrotron emission from Pulsar Wind Nebulae
- Non-thermal emission from relativistic MHD simulations of PWNe: from synchrotron to inverse Compton
- The variability of the Crab Nebula in radio: No radio counterpart to gamma-ray flares
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- Inductive spikes in the Crab Nebula - a theory of gamma-ray flares
- Electron acceleration at pulsar wind termination shocks
- Polarization properties of turbulent synchrotron bubbles: an approach based on Chandrasekhar-Kendall functions
- Modeling Radio Circular Polarization in the Crab Nebula
- Relativistic MHD modeling of magnetized neutron stars, pulsar winds, and their nebulae
- Time-Dependent Electron Acceleration in Pulsar-Wind Termination Shocks: Application to the 2011 April Crab Nebula Gamma-Ray Flare