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91探花
Black Hole

Lensing of space time around a black hole. At 91探花 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.

Angela Taylor

Professor of Experimental Astrophysics

Research theme

  • Astronomy and astrophysics
  • Particle astrophysics & cosmology
  • Instrumentation

Sub department

  • Astrophysics

Research groups

  • Experimental radio cosmology
  • C-BASS
  • The Square Kilometre Array (SKA)
Angela.Taylor@physics.ox.ac.uk
Telephone: 01865 (2)73297
Denys Wilkinson Building, room 753
  • About
  • Publications

Erratum: Source subtraction for the extended Very Small Array and 33-GHz source count estimates

\mnras 386 (2008) 1759-1760

Authors:

KA Cleary, AC Taylor, E Waldram, RA Battye, C Dickinson, RD Davies, RJ Davis, R Genova-Santos, K Grainge, ME Jones, R Kneissl, GG Pooley, R Rebolo, JA Rubi no-Martin, RDE Saunders, PF Scott, A Slosar, D Titterington, RA Watson

A novel heterodyne interferometer for millimetre and sub-millimetre astronomy

Ninteenth International Symposium on Space Terahertz Technology (2008) 293-293

Authors:

PK Grimes, M Brock, CM Holler, K Jacobs, ME Jones, OG King, J Leech, AC Taylor, G Yassin

Clover-measuring the CMB B-mode polarisation

Proceedings of the Eighteenth International Symposium on Space Terahertz Technology 2007, ISSTT 2007 (2007) 238-243

Authors:

CE North, PAR Ade, MD Audley, C Baines, RA Battye, ML Brown, P Cabella, PG Calisse, AD Challinor, WD Duncan, P Ferreira, WK Gear, D Glowacka, DJ Goldie, PK Grimes, M Halpern, V Haynes, GC Hilton, KD Irwin, BR Johnson, ME Jones, AN Lasenby, PJ Leahy, J Leech, S Lewis, B Maffei, L Martinis, P Mauskopf, SJ Melhuish, D O'Dea, SM Parsley, L Piccirillo, G Pisano, CD Reintsema, G Savini, R Sudiwala, D Sutton, AC Taylor, G Teleberg, D Titterington, V Tsaneva, C Tucker, R Watson, S Withington, G Yassin, J Zhang

Abstract:

We describe the objectives, design and predicted performance of Clover, a fully-funded, UK-led experiment to measure the B-mode polarisation of the Cosmic Microwave Background (CMB). Three individual telescopes will operate at 97, 150 and 225 GHz, each populated by up to 256 horns. The detectors, TES bolometers, are limited by unavoidable photon noise, and coupled to an optical design which gives very low systematic errors, particularly in cross-polarisation. The telescopes will sit on three-axis mounts on a site in the Atacama Desert. The angular resolution of around 8 虂 and sky coverage of around 1000 deg2 provide multipole coverage of 20<鈩<1000. Combined with the high sensitivity, this should allow the B-mode signal to be measured (or constrained) down to a level corresponding to a tensor-to-scalar ratio of r = 0.01, providing the emission from polarised foregrounds can be subtracted. This in turn will allow constraints to be placed on the energy scale of inflation, providing an unprecedented insight into the early history of the Universe.

Implications of the Cosmic Background Imager Polarization Data

\apj 660 (2007) 976-987

Authors:

JL Sievers, C Achermann, JR Bond, L Bronfman, R Bustos, CR Contaldi, C Dickinson, PG Ferreira, ME Jones, AM Lewis, BS Mason, J May, ST Myers, N Oyarce, S Padin, TJ Pearson, M Pospieszalski, ACS Readhead, R Reeves, AC Taylor, S Torres

Clover A B-mode polarization experiment

\nar 50 (2006) 993-998

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