L–H transition threshold studies in helium plasmas at JET

Author:

Solano E.R.ORCID,Birkenmeier G.ORCID,Delabie E.,Silva C.ORCID,Hillesheim J.C.,Boboc A.,Carvalho I.S.,Carvalho P.,Chernyshova M.,Craciunescu T.,de la Luna E.,Fontdecaba J.M.ORCID,Henriques R.,Jacquet P.,Jepu I.,Kappatou A.ORCID,King D.,Lennholm M.,Lerche E.,Litherland-Smith E.,Loarte A.ORCID,Maslov M.,Parra Diaz F.,Parail V.,Pawelec E.ORCID,Rimini F.G.,Shaw A.,Siren P.,Szepesi G.,Štancar Ž.,Tholerus E.ORCID,Vartanian S.,Viola B.,Weisen H.,JET Contributors

Funder

FEDER/Ministerio de Ciencia, Innovación y Universidades – Agencia Estatal de Investigación

EUROfusion Consortium

Publisher

IOP Publishing

Subject

Condensed Matter Physics,Nuclear and High Energy Physics

Reference27 articles.

1. Regime of Improved Confinement and High Beta in Neutral-Beam-Heated Divertor Discharges of the ASDEX Tokamak

2. Isotope effects on L-H threshold and confinement in tokamak plasmas

3. Role of stationary zonal flows and momentum transport for L–H transitions in JET;Hillesheim,2016

4. Implications of JET-ILW L–H transition studies for ITER;Hillesheim,2018

5. Experimental evidence for the key role of the ion heat channel in the physics of the L–H transition

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