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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.

Professor Roger Davies

Emeritus Wetton Professor

Research theme

  • Astronomy and astrophysics
  • Instrumentation

Sub department

  • Astrophysics

Research groups

  • Astronomical instrumentation
  • Cosmology
  • Galaxy formation and evolution
  • Hintze Centre for Astrophysical Surveys
  • Rubin-LSST
  • Extremely Large Telescope
Roger.Davies@physics.ox.ac.uk
  • About
  • Publications

Understanding early-type galaxies. Discussion session

ASTR SOC P 297 (2003) 295-303

Abstract:

To initiate this discussion I raised five topics (i) the physical mechanisms that give rise to the global relationships observed in early type galaxies, (ii) the origin of the environmental dependences of galaxy properties such as morphology and mean age, (iii) lessons from galaxy populations in intermediate redshift clusters, (iv) the role of black holes in galaxy evolution and (v) the order of formation of different galactic subcomponents. Comments and questions ranged over these and other issues and a lively discussion ensued.
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The Gemini-North multiobject spectrograph integration, test and commissioning

Proceedings of SPIE - The International Society for Optical Engineering 4841:3 (2002) 1645-1656

Authors:

IM Hook, JR Allington-Smith, S Beard, D Crampton, R Davies, CJ Dickson, A Ebbers, M Fletcher, I Jørgensen, I Jean, S Juneau, R Murowinski, R Nolan, K Laidlaw, B Leckie, GE Marshall, T Purkins, I Richardson, S Roberts, D Simons, M Smith, J Stilburn, K Szeto, CJ Tierney, R Wolff, R Wooff

Abstract:

The first of two Gemini Multi Object Spectrographs (GMOS) has recently begun operation at the Gemini-North 8m telescope. In this presentation we give an overview of the instrument and describe the overall performance of GMOS-North both in the laboratory during integration, and at the telescope during commissioning. We describe the development process which led to meeting the demanding reliability and performance requirements on flexure, throughput and image quality. We then show examples of GMOS data and performance on the telescope in its imaging, long-slit and MOS modes. We also briefly highlight novel features in GMOS that are described in more detail in separate presentations, particularly the flexure compensation system and the on-instrument wavefront sensor. Finally we give an update of the current status of GMOS on Gemini-North and future plans.
More details from the publisher

The Gemini-North multiobject spectrograph stability performance

Proceedings of SPIE the International Society for Optical Engineering 4841:2 (2002) 1189-1200

Authors:

R Murowinski, JR Allington-Smith, SM Beard, D Crampton, R Davies, CJ Dickson, IM Hook, I Jørgensen, S Juneau, GE Marshall, K Szeto, CJ Tierney

Abstract:

Of the Gemini Multi-Object Spectrograph's (GMOS) scientific requirements, one which led to technically interesting areas was the ability to measure velocities to a accuracy of 2 km/s over the entire 5.5 arcminute square field. GMOS's design to meet this requirement includes a mechanical design for stiffness and without hysteresis or image rotation, and an open loop flexure control system which translates the detector position to compensate for flexure. The model used to predict the flexure is an empirical one developed from measured flexure results. In this paper we present the analysis of factors which enable meeting the 2 km/s requirement, and the observing strategies needed to make those observations. We look in particular detail at the development and test of that flexure compensation system, including both lab results and on-telescope results.
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The Gemini-North multiobject spectrograph optical performance

Proceedings of SPIE the International Society for Optical Engineering 4841:3 (2002) 1440-1451

Authors:

R Murowinski, JR Allington-Smith, D Crampton, R Davies, M Fletcher, D Henry, IM Hook, I Jørgensen, S Juneau, C Morbey, J Stilburn, K Szeto

Abstract:

The Gemini Multiobject Spectrographs (GMOS) were designed to take advantage of the exquisite image quality expected of the Gemini telescopes. To achieve this, two of the many requirements placed on the optical system was that it not degrade the best image quality expected of the telescope by more than 10% while delivering a throughput of about 80% over the entire 0.4-1 μm waveband. In this paper, key components of the design and execution of this optical system are discussed and test results are presented demonstrating that it meets these requirements on Gemini today. Among other characteristics, we look at the image quality performance as a function of colour and field angle, the measured throughput, and the focalplane flatness on the detectors.
More details from the publisher

Early-type galaxies in low-density environments

Monthly Notices of the Royal Astronomical Society 337 (2002) 172-198

Authors:

RL Davies, Harald Kuntschner, Russell J Smith, Matthew Colless
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