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2006MNRAS.371..898S - Mon. Not. R. Astron. Soc., 371, 898-914 (2006/September-2)
The properties of extragalactic radio sources selected at 20GHz.
SADLER E.M., RICCI R., EKERS R.D., EKERS J.A., HANCOCK P.J., JACKSON C.A., KESTEVEN M.J., MURPHY T., PHILLIPS C., REINFRANK R.F., STAVELEY-SMITH L., SUBRAHMANYAN R., WALKER M.A., WILSON W.E. and DE ZOTTI G.
Abstract (from CDS):
On a 1-2yr time-scale, the general level of variability at 20GHz appears to be low. For the 108 sources with good-quality measurements in both 2003 and 2004, the median variability index at 20GHz was 6.9 per cent and only five sources varied by more than 30 per cent in flux density.
Most sources in our sample show low levels of linear polarization (typically 1-5 per cent), with a median fractional polarization of 2.3 per cent at 20GHz. There is a trend for fainter 20GHz sources to have higher fractional polarization.
At least 40 per cent of sources selected at 20GHz have strong spectral curvature over the frequency range 1-20GHz. We use a radio `two-colour diagram' to characterize the radio spectra of our sample, and confirm that the flux densities of radio sources at 20GHz (which are also the foreground point-source population for cosmic microwave background anisotropy experiments like Wilkinson Microwave Anisotropy Probe and Planck) cannot be reliably predicted by extrapolating from surveys at lower frequencies. As a result, direct selection at 20GHz appears to be a more efficient way of identifying 90GHz phase calibrators for Atacama Large Millimeter Array (ALMA) than the currently proposed technique of extrapolation from radio surveys at 1-5GHz.
Abstract Copyright: 2006 The Authors. Journal compilation © 2006 RAS
Journal keyword(s): surveys - galaxies: active - cosmic microwave background - radio continuum: galaxies - radio continuum: general
VizieR on-line data: <Available at CDS (J/MNRAS/371/898): table3.dat>
Nomenclature: Table 3: [SRE2006] JHHMM+DDMM N=173.
Simbad objects: 2
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