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Confinement transitions in TJ-II under Li-coated wall conditions

dc.contributor.authorSanchez, J.
dc.contributor.authorAcedo, M.
dc.contributor.authorAlonso, A.
dc.contributor.authorAlonso, J.
dc.contributor.authorAlvarez, P.
dc.contributor.authorAscasibar, E.
dc.contributor.authorBaciero, A.
dc.contributor.authorBalbin, R.
dc.contributor.authorBarrera, L.
dc.contributor.authorBlanco, E.
dc.contributor.authorBotija, J.
dc.contributor.authorPretty, David
dc.date.accessioned2015-12-07T22:27:09Z
dc.date.issued2009
dc.date.updated2016-02-24T11:22:12Z
dc.description.abstractThis paper presents the latest results on confinement studies in the TJ-II stellarator. The inherently strong plasma-wall interaction of TJ-II has been successfully reduced after lithium coating by vacuum evaporation. Besides H retention and low Z, Li was chosen because there exists a reactor-oriented interest in this element, thus giving special relevance to the investigation of its properties. The Li-coating has led to important changes in plasma performance. Particularly, the effective density limit in NBI plasmas has been extended reaching central values of 8 × 1019 m-3 and Te ≈ 250-300 eV, with peaked density, rather flat Te profiles and higher ion temperatures. Due to the achieved density control, a second type of transition has been added to the low density ones previously observed in ECRH plasmas: higher density transitions characterized by the fall in Hα emission, the onset of steep density gradient and the reduction in the turbulence; which are characteristics of transition to the H mode. Confinement studies in ECH plasmas indicate that lowest order magnetic resonances, even in a low shear environment, locally reduce the effective electron heat diffusivities, while Alfven eigenmodes destabilized in NBI plasmas can influence fast ion confinement.
dc.identifier.issn0029-5515
dc.identifier.urihttp://hdl.handle.net/1885/21758
dc.publisherIOP Publishing
dc.sourceNuclear Fusion
dc.subjectKeywords: Alfven eigenmodes; Confinement transitions; Density control; Density transition; Effective density; Electron heat diffusivity; Fast-ion confinement; Ion temperature; Low density; Plasma performance; Plasma wall interaction; Shear environments; Steep densi
dc.titleConfinement transitions in TJ-II under Li-coated wall conditions
dc.typeJournal article
local.bibliographicCitation.startpage104018 (10)
local.contributor.affiliationSanchez, J, Laboratorio Nacional de Fusion
local.contributor.affiliationAcedo, M , CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationAlonso, A., CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationAlonso, J, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationAlvarez, P, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationAscasibar, E, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationBaciero, A, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationBalbin, R, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationBarrera, L, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationBlanco, E, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationBotija, J, CIEMAT:Research Centre for Energy, Environment & Technology
local.contributor.affiliationPretty, David, College of Physical and Mathematical Sciences, ANU
local.contributor.authoruidPretty, David, u4023180
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.identifier.absfor020204 - Plasma Physics; Fusion Plasmas; Electrical Discharges
local.identifier.ariespublicationU4735977xPUB18
local.identifier.citationvolume49
local.identifier.doi10.1088/0029-5515/49/10/104018
local.identifier.scopusID2-s2.0-70349153838
local.type.statusPublished Version

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