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Characterisation of a helicon source for non-linear microwave coupling experiments in a magnetised plasma

POSTER

Abstract

As a non-linear medium, parametric instabilities arise when powerful EM waves propagate in plasma. Such effects are seen in laser-plasma, RF–ionospheric and tokamak heating scenarios. Fusion plasmas in a spherical aspect tokamak are difficult to heat due to their high densities, making the lower cyclotron resonances unreachable via direct means. Beat-wave interactions involving multiple EM waves can be used to excite such resonances. Laser, fusion and ionospheric environments pose diagnostic challenges to fully investigate these processes and measure their impact on macroscopic properties such as density, temperature and energy distributions. For this reason a helicon source driven between 3 & 30 MHz has been commissioned. The 1 m diameter, 3 m long stainless-steel vessel is immersed in a static B-field of up to 90 mT formed by 6 electromagnets. The resulting relatively tenuous (1018 m-3), cool (<10 eV) plasma is ideal for parametric wave coupling experiments with powerful microwave beams.  Microwave interferometry,  frequency compensated Langmuir and RF pickup probes will diagnose how these processes impact the plasma. This paper presents initial experiments characterising the apparatus, with comparison to numerical simulations.

Presenters

  • Kieran J Wilson

Authors

  • Kieran J Wilson

  • Liam Selman

    University of Strathclyde

  • Colin G Whyte

    University of Strathclyde

  • Philip MacInnes

    University of Strathclyde

  • Alan R Young

    University of Strathclyde

  • Alan R Phelps

    University of Strathclyde

  • Adrian W Cross

    University of Strathclyde

  • Liang Zhang

    University of Strathclyde

  • Bengt Eliasson

    SUPA, Physics Department, John Anderson Building, Strathclyde University, Glasgow, G4 0NG, Scotland, UK, University of Strathclyde

  • David C Speirs

    University of Strathclyde

  • Craig W Robertson

    University of Strathclyde

  • Kevin Ronald

    University of Strathclyde

  • Robert Alan Cairns

    University of St. Andrews, University of St Andrews, University of St Andrews, St Andrews, UK

  • Robert Bingham

    University of Strathclyde, Rutherford Appleton Laboratory, Rutherford Appleton Laboratory, Chilton, Didcot OX11 0QX, United Kingdom; Department of Physics, University of Strathclyde, Glasgow G4 0NG, United Kingdom

  • Ruth Bamford

    STFC Rutherford Appleton Laboratory

  • Mark E Koepke

    West Virginia University, Tokamak Energy Inc