Suppressed ion-scale turbulence in a hot high-β plasma View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2016-12-21

AUTHORS

L Schmitz, D P Fulton, E Ruskov, C Lau, B H Deng, T Tajima, M W Binderbauer, I Holod, Z Lin, H Gota, M Tuszewski, S A Dettrick, L C Steinhauer

ABSTRACT

An economic magnetic fusion reactor favours a high ratio of plasma kinetic pressure to magnetic pressure in a well-confined, hot plasma with low thermal losses across the confining magnetic field. Field-reversed configuration (FRC) plasmas are potentially attractive as a reactor concept, achieving high plasma pressure in a simple axisymmetric geometry. Here, we show that FRC plasmas have unique, beneficial microstability properties that differ from typical regimes in toroidal confinement devices. Ion-scale fluctuations are found to be absent or strongly suppressed in the plasma core, mainly due to the large FRC ion orbits, resulting in near-classical thermal ion confinement. In the surrounding boundary layer plasma, ion- and electron-scale turbulence is observed once a critical pressure gradient is exceeded. The critical gradient increases in the presence of sheared plasma flow induced via electrostatic biasing, opening the prospect of active boundary and transport control in view of reactor requirements. More... »

PAGES

13860

Identifiers

URI

http://scigraph.springernature.com/pub.10.1038/ncomms13860

DOI

http://dx.doi.org/10.1038/ncomms13860

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1053088437

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/28000675


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