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Vela x at 31 ghz

Authors :
Dodson, R.
Pearson, T.
Readhead, A.
Bronfman, L.
May, J.
Alvarez, H.
Casassus, S.
Hales, A.
Mason, B.
Source :
ASTROPHYSICAL JOURNAL, Artículos CONICYT, CONICYT Chile, instacron:CONICYT
Publication Year :
2004
Publisher :
UNIVERSITY OF CHICAGO PRESS, 2004.

Abstract

We present observations of the Vela X region at 31 GHz using the Cosmic Background Imager (CBI). We find a strong compact radio source (5.9'x4.1', FWHM) about the Vela pulsar, which we associate with the Vela pulsar wind nebula (PWN) recently discovered at lower radio-frequencies. The CBI's 4' resolution for a 45' field of view allows the PWN to be studied in the large-scale context of Vela X. Filamentary structure in Vela X, which stands out in lower frequency maps, is very low-level at 31 GHz. By combining the 10 CBI channels, which cover 26-36 GHz, and 8.4 GHz archive data, we study the spectral energy distribution (SED) of the PWN and the brightest filaments. Our results show that the spectral index alpha (F_{nu} propto nu^alpha) of the PWN is flat, or even marginally positive, with a value of alpha_{8.4}^{31}=0.10+-0.06, while the Vela X filamentary structure has a negative spectral index of alpha_{8.4}^{31}=-0.28+-0.09. The SED inhomogeneity observed in Vela X suggests different excitation processes between the PWN and the filaments. We investigate whether the PWN's flat spectrum is a consequence of variability or truly reflects the SED of the object. The peak of the PWN at 31 GHz is 80''+-20'' south-west of the peak at 8.4 GHz. This shift is confirmed by comparing the 31 GHz CBI image with higher resolution 5 GHz Australia Telescope Compact Array observations, and is likely to be due to SED variations within the PWN. We also investigate the nature of the Vela X filamentary structure.<br />Comment: Accepted for publication in The Astrophysical Journal. 25 pages, 9 figures

Details

Language :
English
Database :
OpenAIRE
Journal :
ASTROPHYSICAL JOURNAL, Artículos CONICYT, CONICYT Chile, instacron:CONICYT
Accession number :
edsair.doi.dedup.....d8fcc40842330e243596e3d38d164b93