VizieR Online Data Catalog: 9C survey at 15GHz (Waldram+, 2003)

VizieR Online Data Catalog 734 (2003) 20915-20915

Authors:

EM Waldram, GG Pooley, KJB Grainge, ME Jones, RDE Saunders, PF Scott, AC Taylor

Searching for non-Gaussianity in the VSA data

ArXiv astro-ph/0308266 (2003)

Authors:

Richard Savage, Richard A Battye, Pedro Carreira, Kieran Cleary, Rod D Davies, Richard J Davis, Clive Dickinson, Ricardo Genova-Santos, Keith Grainge, Carlos M Gutierrez, Yaser A Hafez, Michael P Hobson, Michael E Jones, Rudiger Kneissl, Katy Lancaster, Anthony Lasenby, JP Leahy, Klaus Maisinger, Guy G Pooley, Nutan Rajguru, Rafael Rebolo, Graca Rocha, Jose Alberto Rubino-Martin, Pedro Sosa Molina, Richard DE Saunders, Paul Scott, Anze Slosar, Angela C Taylor, David Titterington, Elizabeth Waldram, Robert A Watson

Abstract:

We have tested Very Small Array (VSA) observations of three regions of sky for the presence of non-Gaussianity, using high-order cumulants, Minkowski functionals, a wavelet-based test and a Bayesian joint power spectrum/non-Gaussianity analysis. We find the data from two regions to be consistent with Gaussianity. In the third region, we obtain a 96.7% detection of non-Gaussianity using the wavelet test. We perform simulations to characterise the tests, and conclude that this is consistent with expected residual point source contamination. There is therefore no evidence that this detection is of cosmological origin. Our simulations show that the tests would be sensitive to any residual point sources above the data's source subtraction level of 20 mJy. The tests are also sensitive to cosmic string networks at an rms fluctuation level of $105 μK$ (i.e. equivalent to the best-fit observed value). They are not sensitive to string-induced fluctuations if an equal rms of Gaussian CDM fluctuations is added, thereby reducing the fluctuations due to the strings network to $74 μK$ rms . We especially highlight the usefulness of non-Gaussianity testing in eliminating systematic effects from our data.

9C: a survey of radio sources at 15 GHz with the Ryle Telescope

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 342:3 (2003) 915-925

Authors:

Elizabeth M Waldram, Guy G Pooley, Keith JB Grainge, Michael E Jones, Richard DE Saunders, Paul F Scott, Angela C Taylor

First results from the Very Small Array -- III. The cosmic microwave background power spectrum

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 341:4 (2003) 1076-1083

Authors:

PF Scott, P Carreira, K Cleary, RD Davies, RJ Davis, C Dickinson, K Grainge, CM Gutierrez, MP Hobson, ME Jones, R Kneissl, A Lasenby, K Maisinger, GG Pooley, R Rebolo, JA Rubino-Martin, PJ Sosa Molina, B Rusholme, RDE Saunders, R Savage, A Slosar, AC Taylor, D Titterington, E Waldram, RA Watson, A Wilkinson

Cosmological parameter estimation and Bayesian model comparison using VSA data

ArXiv astro-ph/0212497 (2002)

Authors:

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

Abstract:

We constrain the basic comological parameters using the first observations by the Very Small Array (VSA) in its extended configuration, together with existing cosmic microwave background data and other cosmological observations. We estimate cosmological parameters for four different models of increasing complexity. In each case, careful consideration is given to implied priors and the Bayesian evidence is calculated in order to perform model selection. We find that the data are most convincingly explained by a simple flat Lambda-CDM cosmology without tensor modes. In this case, combining just the VSA and COBE data sets yields the 68 per cent confidence intervals Omega_b h^2=0.034 (+0.007, -0.007), Omega_dm h^2 = 0.18 (+0.06, -0.04), h=0.72 (+0.15,-0.13), n_s=1.07 (+0.06,-0.06) and sigma_8=1.17 (+0.25, -0.20). The most general model considered includes spatial curvature, tensor modes, massive neutrinos and a parameterised equation of state for the dark energy. In this case, by combining all recent cosmological data, we find, in particular, 95 percent limit on the tensor-to-scalar ratio R < 0.63 and on the fraction of massive neutrinos f_nu < 0.11; we also obtain the 68 per cent confidence interval w=-1.06 (+0.20, -0.25) on the equation of state of dark energy.