Particle Transport in Young Pulsar Wind Nebulae
arXiv:1204.3913 · doi:10.1088/0004-637X/752/2/83
Abstract
The model for pulsar wind nebulae (PWNe) as the result of the magnetohydrodynamic (MHD) downstream flow from a shocked, relativistic pulsar wind has been successful in reproducing many features of the nebulae observed close to the central pulsars. However, observations of well-studied young nebulae like the Crab Nebula, 3C 58, and G21.5--0.9 do not show the toroidal magnetic field on a larger scale that might be expected in the MHD flow model; in addition, the radial variation of spectral index due to synchrotron losses is smoother than expected in the MHD flow model. We find that pure diffusion models can reproduce the basic data on nebular size and spectral index variation for the Crab, 3C 58, and G21.5--0.9. Most of our models use an energy independent diffusion coefficient; power law variations of the coefficient with energy are degenerate with variation in the input particle energy distribution index in the steady state, transmitting boundary case. Energy dependent diffusion is a possible reason for the smaller diffusion coefficient inferred for the Crab. Monte Carlo simulations of the particle transport allowing for advection and diffusion of particles suggest that diffusion dominates over much of the total nebular volume of the Crab. Advection dominates close to the pulsar and is likely to play a role in the X-ray half-light radius. The source of diffusion and mixing of particles is uncertain, but may be related to the Rayleigh-Taylor instability at the outer boundary of a young PWN or to instabilities in the toroidal magnetic field structure.
13 pages, ApJ, in press, corrected typo
References in corpus (14)
- Acceleration of Particles at the Termination Shock of a Relativistic Striped Wind
- Pulsar Wind Nebulae in the Chandra Era
- Pulsars versus Dark Matter Interpretation of ATIC/PAMELA
- The Magnetic Rayleigh-Taylor Instability in Three Dimensions
- Simulated synchrotron emission from Pulsar Wind Nebulae
- Spitzer Space Telescope Infrared Imaging and Spectroscopy of the Crab Nebula
- Non-thermal emission from relativistic MHD simulations of PWNe: from synchrotron to inverse Compton
- Radio Images of 3C 58: Expansion and Motion of its Wisp
- The Expansion and Radio Spectral Index of G21.5-0.9: Is PSR J1833-1034 the Youngest Pulsar?
- The Infrared Detection of the Pulsar Wind Nebula in the Galactic Supernova Remnant 3C 58
- Escape from Vela X
- Multi-Zone Modeling of The Pulsar Wind Nebula HESS J1825-137
- Pulsar Wind Nebulae with Thick Toroidal Structure
- Magnetohydrodynamic Models for the Structure of Pulsar-Wind Nebulae
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- On the Radio Emitting Particles of the Crab Nebula: Stochastic Acceleration Model
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- Spectrum and extension of the inverse-Compton emission of the Crab Nebula from a combined Fermi-LAT and H.E.S.S. analysis
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- A detailed look at the thermal and non-thermal X-ray emission from the Vela supernova remnant with SRG/eROSITA
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- {\it NuSTAR} hard X-ray studies of the pulsar wind nebula 3C~58
- Outflow and Emission Model of Pulsar Wind Nebulae with the Back-reaction of Particle Diffusion
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- A broadband X-ray study of the Rabbit pulsar wind nebula powered by PSR J1418-6058
- Study of maximum electron energy of sub-PeV pulsar wind nebulae by multiwavelength modelling
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- X-ray studies of the pulsar PSR J1420-6048 and its TeV pulsar wind nebula in the Kookaburra region
- NuSTAR observations of G11.2-0.3
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