The 2dF Galaxy Redshift Survey: The population of nearby radio galaxies at the 1-mJy level

Monthly Notices of the Royal Astronomical Society 333:1 (2002) 100-120

Authors:

M Magliocchetti, SJ Maddox, CA Jackson, J Bland-Hawthorn, T Bridges, R Cannon, S Cole, M Colless, C Collins, W Couch, G Dalton, R De Propris, SP Driver, G Efstathiou, RS Ellis, CS Frenk, K Glazebrook, O Lahav, I Lewis, S Lumsden, JA Peacock, BA Peterson, W Sutherland, K Taylor

Abstract:

We use redshift determinations and spectral analysis of galaxies in the 2dF Galaxy Redshift Survey to study the properties of local radio sources with S ≥ 1 mJy. 557 objects (hereafter called the spectroscopic sample) drawn from the FIRST survey, corresponding to 2.3 per cent of the total radio sample, are found in the 2dFGRS catalogue within the area 9h48m ≲ RA(2000) ≲ 14h32m and -2o.77 ≲ Dec.(2000) ≲ 2o.25, down to a magnitude limit bJ = 19.45. The excellent quality of 2dF spectra allows us to divide these sources into classes, according to their optical spectra. Absorption-line systems make up 63 per cent of the spectroscopic sample. These may or may not show emission lines due to AGN activity, and correspond to 'classical' radio galaxies belonging mainly to the FRI class. They are characterized by relatively high radio-to-optical ratios, red colours, and high radio luminosities (1021 ≲ P1.4 GHz/W Hz-1 sr-1 ≲ 1024). Actively star-forming galaxies contribute about 32 per cent of the sample. These objects are mainly found at low redshifts (z ≲ 0.1) and show low radio-to-optical ratios, blue colours and low radio luminosities. We also found 18 Seyfert 2 galaxies (3 per cent) and four Seyfert 1s (1 per cent). Analysis of the local radio luminosity function (LF) shows that radio galaxies are well described by models that assume pure luminosity evolution, at least down to radio powers P1.4 GHz ≲ 1020.5 W Hz-1 sr-1. Late-type galaxies, whose relative contribution to the radio LF is found to be lower than was predicted by previous works, present an LF which is comparable with the IRAS galaxy LF. This class of sources therefore plausibly constitutes the radio counterpart of the dusty spirals and starbursts that dominate the counts at 60 μm.

Sub-millimetre observations of hyperluminous infrared galaxies

(2002)

Authors:

D Farrah, S Serjeant, A Efstathiou, M Rowan-Robinson, A Verma

First results from the Very Small Array -- I. Observational methods

ArXiv astro-ph/0205378 (2002)

Authors:

Robert A Watson, Pedro Carreira, Kieran Cleary, Rod D Davies, Richard J Davis, Clive Dickinson, Keith Grainge, Carlos M Gutierrez, Michael P Hobson, Michael E Jones, Rudiger Kneissl, Anthony Lasenby, Klaus Maisinger, Guy G Pooley, Rafael Rebolo, Jose Alberto Rubino-Martin, Ben Rusholme, Richard DE Saunders, Richard Savage, Paul F Scott, Anze Slosar, Pedro J Sosa Molina, Angela C Taylor, David Titterington, Elizabeth Waldram, Althea Wilkinson

Abstract:

The Very Small Array (VSA) is a synthesis telescope designed to image faint structures in the cosmic microwave background on degree and sub-degree angular scales. The VSA has key differences from other CMB interferometers with the result that different systematic errors are expected. We have tested the operation of the VSA with a variety of blank-field and calibrator observations and cross-checked its calibration scale against independent measurements. We find that systematic effects can be suppressed below the thermal noise level in long observations; the overall calibration accuracy of the flux density scale is 3.5 percent and is limited by the external absolute calibration scale.

First results from the Very Small Array -- II. Observations of the CMB

ArXiv astro-ph/0205381 (2002)

Authors:

Angela C Taylor, Pedro Carreira, Kieran Cleary, Rod D Davies, Richard J Davis, Clive Dickinson, Keith Grainge, Carlos M Gutierrez, Michael P Hobson, Michael E Jones, Rudiger Kneissl, Anthony Lasenby, JP Leahy, Klaus Maisinger, Guy G Pooley, Rafael Rebolo, Jose Alberto Rubino-Martin, Ben Rusholme, Richard DE Saunders, Richard Savage, Paul F Scott, Anze Slosar, Pedro J Sosa Molina, David Titterington, Elizabeth Waldram, Robert A Watson, Althea Wilkinson

Abstract:

We have observed the cosmic microwave background temperature fluctuations in eight fields covering three separated areas of sky with the Very Small Array at 34 GHz. A total area of 101 square degrees has been imaged, with sensitivity on angular scales 3.6 - 0.4 degrees (equivalent to angular multipoles l=150-900). We describe the field selection and observing strategy for these observations. In the full-resolution images (with synthesised beam of FWHM ~ 17 arcmin) the thermal noise is typically 45 microK and the CMB signal typically 55 microK. The noise levels in each field agree well with the expected thermal noise level of the telescope, and there is no evidence of any residual systematic features. The same CMB features are detected in separate, overlapping observations. Discrete radio sources have been detected using a separate 15 GHz survey and their effects removed using pointed follow-up observations at 34 GHz. We estimate that the residual confusion noise due to unsubtracted radio sources is less than 14 mJy/beam (15 microK in the full-resolution images), which added in quadrature to the thermal noise increases the noise level by 6 %. We estimate that the rms contribution to the images from diffuse Galactic emission is less than 6 microK. We also present images which are convolved to maximise the signal-to-noise of the CMB features and are co-added in overlapping areas, in which the signal-to-noise of some individual CMB features exceeds 8.

First results from the Very Small Array -- IV. Cosmological parameter estimation

ArXiv astro-ph/0205367 (2002)

Authors:

Jose Alberto Rubino-Martin, Rafael Rebolo, Pedro Carreira, Kieran Cleary, Rod D Davies, Richard J Davis, Clive Dickinson, Keith Grainge, Carlos M Gutierrez, Michael P Hobson, Michael E Jones, Rudiger Kneissl, Anthony Lasenby, Klaus Maisinger, Carolina Oedman, Guy G Pooley, Pedro J Sosa Molina, Ben Rusholme, Richard DE Saunders, Richard Savage, Paul F Scott, Anze Slosar, Angela C Taylor, David Titterington, Elizabeth Waldram, Robert A Watson, Althea Wilkinson

Abstract:

We investigate the constraints on basic cosmological parameters set by the first compact-configuration observations of the Very Small Array (VSA), and other cosmological data sets, in the standard inflationary LambdaCDM model. Using a weak prior 40 < H_0 < 90 km/s/Mpc and 0 < tau < 0.5 we find that the VSA and COBE_DMR data alone produce the constraints Omega_tot = 1.03^{+0.12}_{-0.12}, Omega_bh^2 = 0.029^{+0.009}_{-0.009}, Omega_cdm h^2 = 0.13^{+0.08}_{-0.05} and n_s = 1.04^{+0.11}_{-0.08} at the 68 per cent confidence level. Adding in the type Ia supernovae constraints, we additionally find Omega_m = 0.32^{+0.09}_{-0.06} and Omega_Lambda = 0.71^{+0.07}_{-0.07}. These constraints are consistent with those found by the BOOMERanG, DASI and MAXIMA experiments. We also find that, by combining all the recent CMB experiments and assuming the HST key project limits for H_0 (for which the X-ray plus Sunyaev--Zel'dovich route gives a similar result), we obtain the tight constraints Omega_m=0.28^{+0.14}_{-0.07} and Omega_Lambda= 0.72^{+0.07}_{-0.13}, which are consistent with, but independent of, those obtained using the supernovae data.