2003A&A...404..939V


Query : 2003A&A...404..939V

2003A&A...404..939V - Astronomy and Astrophysics, volume 404, 939-947 (2003/6-4)

Interaction of a magnetized pulsar wind with its surroundings. MHD simulations of pulsar wind nebulae.

VAN DER SWALUW E.

Abstract (from CDS):

Magnetohydrodynamical simulations are presented of a magnetized pulsar wind interacting directly with the interstellar medium, or, in the case of a surrounding supernova remnant, with the associated freely expanding ejecta of the progenitor star. In both cases the simulations show that the pulsar wind nebula will be elongated due to the dynamical influence of the toroidal magnetic fields, which confirm predictions from a semi-analytical model presented by Begelman & Li (1992ApJ...397..187B). The simulations follow the expansion of the pulsar wind nebula when the latter is bounded by a strong shock and show that the expansion can be modeled with a standard power-law expansion rate. By performing different simulations with different magnetization parameters, I show that the latter weakly correlates with the elongation of the pulsar wind nebula. The results from the simulations are applied to determine the nature of the expansion rate of the pulsar wind nebula 3C 58. It is shown that there is both observational and theoretical evidence which supports the scenario in which the pulsar wind nebula 3C 58 has caught up with the reverse shock of the associated (but undetected) supernova remnant.

Abstract Copyright:

Journal keyword(s): pulsars: general - supernova remnants - shock waves - hydrodynamics

Simbad objects: 6

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Number of rows : 6
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 SNR G130.7+03.1 SNR 02 05 37.0 +64 49 42           ~ 608 4
2 M 1 SNR 05 34 30.9 +22 00 53           ~ 6095 1
3 V* CM Tau Psr 05 34 31.9474694616 +22 00 52.153698024           ~ 5173 0
4 SNR G011.2-00.3 SNR 18 11 28.9 -19 25 29           ~ 282 1
5 SNR G063.7+01.1 SNR 19 47 52 +27 45.0           ~ 26 0
6 SNR G074.9+01.2 SNR 20 16 02.4 +37 12 48           ~ 180 2

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2023.09.28-13:43:41

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