Full-3D relativistic MHD simulations of Bow Shock Pulsar Wind Nebulae: dynamics
arXiv:1902.00442 · doi:10.1093/mnras/stz382
Abstract
Bow shock pulsar wind nebulae (BSPWNe) are know to show a large variety of shapes and morphologies, both when comparing different objects, and for the same object in different energy bands. It is unclear if such a variety is related to differences in the pulsar wind properties, or to differences in the conditions of the ambient medium. We present here a set of full three-dimensional, relativistic and magneto-hydrodynamic simulations of BSPWNe, with the intention of determining how differences in the injection conditions by the pulsar wind reflect in the nebular dynamics. To achieve a good coverage of the available parameter space we have run several simulations varying those parameters that are most representative of the wind properties: the latitudinal anisotropy of the wind energy flux with respect to the pulsar spin axis, the level of magnetization, the inclination of the pulsar spin axis with respect to the pulsar direction of motion. We have followed the dynamics in these systems, not just in the very head, but also in the tail, trying to assess if and how the system retains memory of the injection at large distances from the pulsar itself. In this paper we focus our attention on the characterization of the fluid structure and magnetic field properties. We have tried to evaluate the level of turbulence in the tail, and its relation to injection, the survival of current sheets, and the degree of mixing between the shocked ambient medium and the relativistic pulsar wind material.
17 pages, 18 figures, 1 table
References in corpus (21)
- PLUTO: a Numerical Code for Computational Astrophysics
- Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth
- Equation of State in Relativistic Magnetohydrodynamics: variable versus constant adiabatic index
- The observed velocity distribution of young pulsars
- An HLLC Solver for Relativistic Flows -- II. Magnetohydrodynamics
- Simulated synchrotron emission from Pulsar Wind Nebulae
- Non-thermal emission from relativistic MHD simulations of PWNe: from synchrotron to inverse Compton
- Geminga's puzzling pulsar wind nebula
- Pulsar Wind Nebulae Created by Fast-Moving Pulsars
- Evidence for alignment of the rotation and velocity vectors in pulsars. II. Further data and emission heights
- X-ray Observations of Parsec-Scale Tails behind Two Middle-Aged Pulsars
- Three-dimensional hydrodynamic simulations of asymmetric pulsar wind bow shocks
- Constraints on particle acceleration sites in the Crab Nebula from relativistic MHD simulations
- Multi-D magnetohydrodynamic modelling of pulsar wind nebulae: recent progress and open questions
- Chandra observations of the pulsar PSR B1929+10 and its environment
- X-ray analysis of the proper motion and pulsar wind nebula for PSR J1741-2054
- Deep Chandra Observations of the Pulsar Wind Nebula Created by PSR B0355+54
- Kinematics of the Galactic SNR G109.1-1.0 (CTB 109)
- Investigating CXOU J163802.6-471358: a new pulsar wind nebula in the Norma region?
- Modeling Pulsar Wind Nebulae
- Polarization properties of turbulent synchrotron bubbles: an approach based on Chandrasekhar-Kendall functions
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- Reverberation of pulsar wind nebulae (I): Impact of the medium properties and other parameters upon the extent of the compression
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- Reverberation of pulsar wind nebulae (II): Anatomy of the "thin-shell'' evolution
- From young to old: the evolutionary path of Pulsar Wind Nebulae
- Reverberation of pulsar wind nebulae (III): Modelling of the plasma interface empowering a long term radiative evolution
- A NuSTAR and Chandra Investigation of the Misaligned Outflow of PSR J1101-6101 and the Lighthouse Pulsar Wind Nebula
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- Gamma-ray halos around pulsars: impact on pulsar wind physics and galactic cosmic ray transport
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- Special Relativistic Hydrodynamics with CRONOS
- Exploiting Morphological Data from Pulsar Wind Nebulae via a Spatio-Temporal Leptonic Transport Code
- Introducing the HD+B model for pulsar wind nebulae: a hybrid hydrodynamics/radiative approach
- Resolving the bow shock and tail of the cannonball pulsar PSR J0002+6216
- "The Goose" Pulsar Wind Nebula of PSR J1016-5857: The Birth of a Plerion
- The Guitar's Magnetic Field Revealed by Starlight Polarization
- Spatio-spectral-temporal Modelling of Two Young Pulsar Wind Nebulae
- Investigating the mysterious nature of 1LHAASO J1740+0948u through deep XMM-Newton observations
- IXPE Polarizations of the Lighthouse Pulsar, Trail, and Filament
- Self-confinement of relativistic pair beams in magnetized interstellar plasmas: the case of pulsar X-ray filaments