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Overview of transport, fast particle and heating and current drive physics using tritium in JET plasmas
 
D. Stork, Yu. Baranov, P. Belo, L. Bertalot, D. Borba, J.H. Brzozowski, C.D. Challis, D. Ciric, S. Conroy, M. de Baar, P. de Vries, P. Dumortier, L. Garzotti, N.C. Hawkes, T.C. Hender, E. Joffrin, T.T.C. Jones, V. Kiptily, P. Lamalle, J. Mailloux, M. Mantsinen, D.C. McDonald, M.F.F. Nave, R. Neu, M. O’Mullane, J. Ongena, R.J. Pearce, S. Popovichev, S.E. Sharapov, M. Stamp, J. Stober, E. Surrey, M. Valovic, I. Voitsekhovitch, H. Weisen, A.D. Whiteford, L. Worth, V. Yavorskij, K.-D. Zastrow and JET EFDA contributorsa
 

2005

  DOI
 
Resumo
 
Results are presented from the JET Trace Tritium Experimental (TTE) campaign using minority tritium (T) plasmas (nT/nD < 3%). Thermal tritium particle transport coefficients (DT, vT) are found to exceed neo-classical values in all regimes, except in ELMy H-modes at high densities and in the region of internal transport barriers (ITBs) in reversed shear plasmas...

 

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