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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Prof Michael Jones

Professor of Experimental Cosmology

Sub department

  • Astrophysics

Research groups

  • Astronomical instrumentation
  • Cosmology
  • Experimental radio cosmology
  • C-BASS
  • The Square Kilometre Array (SKA)
Mike.Jones@physics.ox.ac.uk
Telephone: 01865 (2)73441
Denys Wilkinson Building, room 758
  • About
  • Publications

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
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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
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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.
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The CMB power spectrum out to l=1400 measured by the VSA

ArXiv astro-ph/0212495 (2002)

Authors:

Keith Grainge, Pedro Carreira, Kieran Cleary, Rod D Davies, Richard J Davis, Clive Dickinson, Ricardo Genova-Santos, 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, Rafael Rebolo, Jose Alberto Rubino-Martin, Pedro Sosa Molina, Carolina Odman, 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 have observed the cosmic microwave background (CMB) in three regions of sky using the Very Small Array (VSA) in an extended configuration with antennas of beamwidth 2 degrees at 34 GHz. Combined with data from previous VSA observations using a more compact array with larger beamwidth, we measure the power spectrum of the primordial CMB anisotropies between angular multipoles l = 160 - 1400. Such measurements at high l are vital for breaking degeneracies in parameter estimation from the CMB power spectrum and other cosmological data. The power spectrum clearly resolves the first three acoustic peaks, shows the expected fall off in power at high l and starts to constrain the position and height of a fourth peak.
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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.
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