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Details of Grant 

EPSRC Reference: EP/L021803/1
Title: Atomic Processes for Magnetic Fusion Plasmas: Dielectronic Recombination of the Tungsten Isonuclear Sequence
Principal Investigator: Badnell, Professor N
Other Investigators:
O'Mullane, Dr M G
Researcher Co-Investigators:
Project Partners:
Department: Physics
Organisation: University of Strathclyde
Scheme: Standard Research
Starts: 17 November 2014 Ends: 16 November 2017 Value (£): 326,261
EPSRC Research Topic Classifications:
Atoms & Ions Fusion
Plasmas - Laser & Fusion
EPSRC Industrial Sector Classifications:
Energy
Related Grants:
Panel History:
Panel DatePanel NameOutcome
05 Feb 2014 EPSRC Physical Sciences Physics - February 2014 Announced
Summary on Grant Application Form
Magnetic fusion is under intense study through-out the world as a safe and clean energy source for the future.

Present day machines include JET in the UK and ASDEX in Germany, while the next step machine ITER is

currently under construction in France.

The state of matter in these machines --- the distribution of temperature and density, chemical composition,

flow velocities --- can be determined through diagnostic analysis of observational data in which models,

incorporating the full physics of the object, confront the observations.

This information is fundamental for our understanding of the behaviour of magnetic fusion plasmas

and key to harnessing them, e.g. via the proposed DEMO demonstration power plant.

Collisions of electrons with atoms, ions and molecules play a fundamental role in characterizing

magnetic fusion plasmas. The important fole of tungsten in present (JET/ASDEX) and future (ITER)

machines is a challenge for atomic physics and modelling based upon it.

We propose a series of calculations which are essential to reliably model and interpret observations

from these plasmas. We will also carry-out such modelling applicable to the present day machines.

Key Findings
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Organisation Website: http://www.strath.ac.uk