Open University Consolidated Grant Phase 1
Lead Research Organisation:
The Open University
Department Name: Physical Sciences
Abstract
We will study a wide range of some of the most important problems in modern astrophysics. Our programme is aimed at: a) Measuring the make-up and composition of the basic components of material in our Galaxy. This includes understanding where energetic 'cosmic ray' particles in the space between stars come from; studying the birth and evolution of massive stars from observations of placental ionised birthplaces (called HII regions) using LOFAR, STFC's new radio telescope; examining how young massive star clusters influence their local region of space via their UV radiation, and how they deposit material and mechanical energy back into space. Finally, to understand how some massive stars quite quickly form massive stellar remnants, such as black holes. b) We will study exoplanets, planets orbiting around distant stars. We will observe the structure and properties of their atmospheres, to learn whether close-in planets are consumed by their host star. We are working towards detecting habitable exoplanets, including examining whether we can identify systems with rocky planets using the chemical composition of the host star's atmosphere. We are also studying the rocky planets in the Solar System: to understand the water and dust cycles in in the Martian atmosphere and the contributions of atmospheric eddy processes in the atmosphere of Venus. c) On a much larger scale, we seek to understand the structure and history of the entire Universe: studying the dark matter distribution in giant galaxies, and understanding how black hole accretion affects star formation; and using data from the Herschel and ground based telescopes, assessing the physical and morphological properties of distant star-forming galaxies, and studying how the evolving energy budget of the Universe. d) Experimenting in the laboratory to mimic the formation of molecules in on dust grains in space that lead to the complex chemistry that acted as the precursor to life in the Universe, and to explore the chemistry of Mars and Titan. e) Finally, we propose developing and extending our unique programme of Public Engagement and Outreach, to bring the excitement of the Universe to the general public, and the next generation of young people.
Planned Impact
Attached as a separate document, and also included as Appendix D in the main case
Organisations
Publications

Ertel S
(2014)
Potential multi-component structure of the debris disk around HIP 17439 revealed by Herschel /DUNES
in Astronomy & Astrophysics

Sadavoy S
(2012)
Herschel observations of a potential core-forming clump: Perseus B1-E
in Astronomy & Astrophysics

Russeil D
(2013)
The Herschel view of the massive star-forming region NGC 6334
in Astronomy & Astrophysics

Ysard N
(2013)
Variation in dust properties in a dense filament of the Taurus molecular complex (L1506)
in Astronomy & Astrophysics

Juvela M
(2012)
A Corona Australis cloud filament seen in NIR scattered light III. Modelling and comparison with Herschel sub-millimetre data?
in Astronomy & Astrophysics

Giannini T
(2012)
The Herschel view of the on-going star formation in the Vela-C molecular cloud
in Astronomy & Astrophysics

Suutarinen A
(2013)
Determination of the far-infrared dust opacity in a prestellar core
in Astronomy & Astrophysics

Wiegert J
(2014)
How dusty is a Centauri? Excess or non-excess over the infrared photospheres of main-sequence stars
in Astronomy & Astrophysics

Minier V
(2013)
Ionisation impact of high-mass stars on interstellar filaments A Herschel study of the RCW 36 bipolar nebula in Vela C ???
in Astronomy & Astrophysics

Sicilia-Aguilar A
(2013)
Protostars, multiplicity, and disk evolution in the Corona Australis region: a Herschel Gould Belt Study
in Astronomy & Astrophysics
Description | This supported Astronomical Research at the Open University. Outputs have been reported in the Peer reviewed and unrefereed literature |
Exploitation Route | The results and outputs have informed the following Consolidated grant, into which this was rolled. |
Sectors | Education |
Description | Some of the research was used on TV news programmes. |
Sector | Education |
Impact Types | Societal |