3D dynamics and morphology of bow-shock Pulsar Wind Nebulae
arXiv:1804.07327 · doi:10.1093/mnras/stz213
Abstract
Bow-shock pulsar wind nebulae (PWNe) show a variety of morphological shapes. We attribute this diversity to the geometrical factors: relative orientations of the pulsar rotation axis, proper velocity, and the line of sight (magnetic inclination angle may also have a certain influence on the morphology). We identify three basic types of bow-shock nebulae: (i) a "Rifle Bullet" (pulsar spin axis and proper velocity are aligned); (ii) a "Frisbee" (pulsar spin axis and proper velocity are orthogonal with the spin axis lying in the plane of the sky), and (iii) a Cart Wheel" (like frisbee but the spin axis is perpendicular to the plane of the sky). Using 3D RMHD simulations, as well as analytical calculations, we reproduce the key morphological features of the bow-shock PWNe, as well as variations, are seen across different systems. magnetic stresses within the shocked pulsar wind affect the overall structure strongly, producing "whiskers", "tails", "filled-in" and "mushroom" shapes, as well as non-symmetric morphologies. On the other hand, the interstellar medium inhomogeneities and the anisotropy of the energy flux in the pulsar wind have only a mild impact of the PWN morphology. In a few cases, when we clearly identify specific morphological structures, our results do not favor alignment of the pulsar spin axis and proper velocity. Our calculations of the underlying emission processes explain the low synchrotron X-ray efficiency (in terms of the spin-down luminosity) and imply an energetical subdominant contribution of the inverse Compton process.
27 pages, 27 figures, accepted by MNRAS
References in corpus (20)
- PLUTO: a Numerical Code for Computational Astrophysics
- Modeling interaction of relativistic and nonrelativistic winds in binary system PSR 1259-63/SS2883. I.Hydrodynamical limit
- Magnetic draping of merging cores and radio bubbles in clusters of galaxies
- A Particle Module for the PLUTO code: II - Hybrid Framework for Modeling Non-thermal emission from Relativistic Magnetized flows
- Geminga's puzzling pulsar wind nebula
- Pulsar Wind Nebulae Created by Fast-Moving Pulsars
- Pulsar-wind nebulae and magnetar outflows: observations at radio, X-ray, and gamma-ray wavelengths
- On the X-ray feature associated with the Guitar Nebula
- Light-curve modelling constraints on the obliquities and aspect angles of the young Fermi pulsars
- Three-dimensional hydrodynamic simulations of asymmetric pulsar wind bow shocks
- Orbital evolution of colliding star and pulsar winds in 2D and 3D; effects of: dimensionality, EoS, resolution, and grid size
- Particle acceleration in relativistic magnetic flux-merging events
- 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
- A hydrodynamics-informed, radiation model for HESS J0632057 from radio to gamma rays
- On the Linear Stability of Magnetized Jets Without Current Sheets - Relativistic Case
- Non-thermal radiation from a pulsar wind interacting with an inhomogeneous stellar wind
- Modelling the bow shock Pulsar Wind Nebulae propagating through a non-uniform ISM
- HESS J0632+057: hydrodynamics and nonthermal emission
- Inverse Compton Emission from Relativistic Jets in Binary Systems
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- Discovery of a Pulsar-powered Bow Shock Nebula in the Small Magellanic Cloud Supernova Remnant DEMS5
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- A Search for TeV Gamma-ray Emission from Pulsar Tails by VERITAS
- Evolved Pulsar Wind Nebulae
- Pulsar-wind-nebula-powered Galactic center X-ray filament G0.13-0.11: Proof of the synchrotron nature by IXPE
- Jet-like structures from PSR J1135-6055
- 3D Relativistic MHD Simulations of Pulsar Bow Shock Nebulae
- A deep X-ray spectral imaging of the bow-shock pulsar wind nebula associated with PSR B1929+10
- High-Resolution Radio Study of the Dragonfly Nebula
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- Fast moving pulsars as probes of interstellar medium
- Ultra-high-energy -ray emission associated with the tail of a bow-shock pulsar wind nebula
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- Chandra Proper Motions and Milliarcsecond Astrometry of Nineteen Pulsars