Completed Physics & Astronomy Engineering

Liverpool Telescope operations 2009-2014

In plain English

AI plain-English summary

A robotic telescope on La Palma, the Liverpool Telescope, automatically tracks exploding stars, asteroids, and gamma-ray bursts across the night sky. It is the world’s largest and most flexible robotic telescope, with 95% of its observing time dedicated to internationally competitive research. The telescope can react within minutes to sudden cosmic events—such as a gamma-ray burst or a supernova—while also conducting long-term monitoring of objects over months or years. This dual capability fills a gap between human-operated observatories, which cannot respond instantly, and space telescopes, which have limited lifetimes and narrower fields of view. The telescope has already enabled discoveries published in *Science* and *Nature*, including the first optical polarisation measurement of a gamma-ray burst afterglow and the direct detection of the YORP effect—a subtle force that slowly changes an asteroid’s spin. This grant funds continued maintenance and operation of the telescope for the Liverpool John Moores University Astrophysics Research Institute and the wider UK astronomy community. The research is fundamental science: it deepens understanding of stellar explosions, planetary system formation, and the behaviour of small solar system bodies, with no immediate practical application. Past fundamental astronomy has, however, led to technologies such as CCD sensors now used in medical imaging and digital cameras.

View original technical description
The Liverpool Telescope (LT ) (http://telescope.livjm.ac.uk/) is the world's largest and most sophisticated (in terms of range of science programmes, flexibility of scheduling, and sophistication of instrumentation) robotic telescope whose primary purpose (95% of observing time) is to carry out internationally competitive research. Since the commencement of robotic operation at the end of 2004, the LT has combined rapid reaction to Targets of Opportunity (ToO) with the ability to perform systematic long-term monitoring of targets and coordinated observations with other facilities, both on the ground and in space. This has allowed it to participate in many exciting new discoveries reported in high impact journals: - the earliest measurement of the optical polarization of a Gamma ray burst afterglow (Mundell et al, Science, 2007, 315, 1822) - the monitoring of many supernovae including the recent 'double supernova' SN2006jc (Pastroello et al, Nature, 2007, 447, 829) - the direct detection of the asteroidal YORP effect (Lowry et al, Science, 2007, 316, 272) - the discovery of a jupiter-saturn analogue solar system via gravitational microlensing (Gaudi et al, Science, 2008, 319, 927) - observations of the recent 'naked eye' GRB080319 (Racusin et al, Nature, 2008, 455, 813) This application is for continuation of funding for the maintenance and operation of the Liverpool Telescope, and the continuation of its role as a major resource both for the LJMU Astrophysics Research Institute and the wider UK community.

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Researchers

David Carter (Co-Investigator)Iain Allan Steele (Co-Investigator)MF Bode (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Liverpool Telescope Operations 2017-2019
Liverpool Telescope Operations 2019-2020
Liverpool Telescope Operations 2014-2016
Liverpool Telescope Operations Oct 2016 - Mar 2017
Liverpool Telescope Operations 2020-2023

Original classification

Research Grant

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