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Cited article:

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Modelling the γ-ray pulsar wind nebulae population in our galaxy

M Fiori, B Olmi, E Amato, et al.
Monthly Notices of the Royal Astronomical Society 511 (1) 1439 (2022)
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An In Situ Study of Turbulence near Stellar Bow Shocks

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The Astrophysical Journal 922 (2) 233 (2021)
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Full-3D relativistic MHD simulations of bow shock pulsar wind nebulae: dynamics

B Olmi and N Bucciantini
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Full-3D relativistic MHD simulations of bow shock pulsar wind nebulae: emission and polarization

B Olmi and N Bucciantini
Monthly Notices of the Royal Astronomical Society 488 (4) 5690 (2019)
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B Olmi and N Bucciantini
Monthly Notices of the Royal Astronomical Society 490 (3) 3608 (2019)
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A laminar model for the magnetic field structure in bow-shock pulsar wind nebulae

N Bucciantini
Monthly Notices of the Royal Astronomical Society 478 (2) 2074 (2018)
https://doi.org/10.1093/mnras/sty1199

Numerical simulations of mass loading in the tails of bow-shock pulsar-wind nebulae

B Olmi, N Bucciantini and G Morlino
Monthly Notices of the Royal Astronomical Society 481 (3) 3394 (2018)
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Bow-shock pulsar-wind nebulae passing through density discontinuities

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Reconstructing the Guitar: Blowing Bubbles with a Pulsar Bow Shock Backflow

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The Astrophysical Journal 683 (2) L159 (2008)
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Three-dimensional hydrodynamic simulations of asymmetric pulsar wind bow shocks

M. Vigelius, A. Melatos, S. Chatterjee, B. M. Gaensler and P. Ghavamian
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Searches for diffuse X-ray emission around millisecond pulsars: an X-ray nebula associated with PSR J2124-3358

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Astronomy & Astrophysics 448 (2) L13 (2006)
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How does the Galaxy Work?

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Winds,B‐Fields, and Magnetotails of Pulsars

M. M. Romanova, G. A. Chulsky and R. V. E. Lovelace
The Astrophysical Journal 630 (2) 1020 (2005)
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The Mouse that Soared: High‐Resolution X‐Ray Imaging of the Pulsar‐powered Bow Shock G359.23−0.82

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Taurus Tunable Filter — Seven Years of Observing

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Bow Shocks from Neutron Stars: Scaling Laws andHubble Space TelescopeObservations of the Guitar Nebula

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The Astrophysical Journal 575 (1) 407 (2002)
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