2018MNRAS.475..822B


Query : 2018MNRAS.475..822B

2018MNRAS.475..822B - Mon. Not. R. Astron. Soc., 475, 822-826 (2018/March-3)

Modeling radio circular polarization in the Crab nebula.

BUCCIANTINI N. and OLMI B.

Abstract (from CDS):

In this paper, we present, for the first time, simulated maps of the circularly polarized synchrotron emission from the Crab nebula, using multidimensional state of the art models for the magnetic field geometry. Synchrotron emission is the signature of non-thermal emitting particles, typical of many high-energy astrophysical sources, both Galactic and extragalactic ones. Its spectral and polarization properties allow us to infer key information on the particles distribution function and magnetic field geometry. In recent years, our understanding of pulsar wind nebulae has improved substantially thanks to a combination of observations and numerical models. A robust detection or non-detection of circular polarization will enable us to discriminate between an electron-proton plasma and a pair plasma, clarifying once for all the origin of the radio emitting particles, setting strong constraints on the pair production in pulsar magnetosphere, and the role of turbulence in the nebula. Previous attempts at measuring the circular polarization have only provided upper limits, but the lack of accurate estimates, based on reliable models, makes their interpretation ambiguous. We show here that those results are above the expected values, and that current polarimetric techniques are not robust enough for conclusive result, suggesting that improvements in construction and calibration of next generation radio facilities are necessary to achieve the desired sensitivity.

Abstract Copyright: © 2017 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): MHD - polarization - radiation mechanisms: non-thermal - relativistic processes - ISM: individual objects: Crab nebula - ISM: supernova remnants

Simbad objects: 3

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Number of rows : 3
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 M 1 SNR 05 34 30.9 +22 00 53           ~ 6194 1
2 V* CM Tau Psr 05 34 31.9474694616 +22 00 52.153698024           ~ 5261 0
3 NAME Galactic Center reg 17 45 39.60213 -29 00 22.0000           ~ 14421 0

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