Overview of the early campaign diagnostics for the SPARC tokamak (invited).
Reinke ML, Abramovic I, Albert A, Asai K, Ball J, Batko J, Brettingen J, Brunner D, Cario M, Carmichael J, Chrobak C, Creely A, Cykman D, Dalla Rosa M, Dubas E, Downey C, Ferrera A, Frenje J, Fox-Widdows E, Gocht R, Gorini G, Granetz R, Greenwald M, Grieve A, Hanson M, Hawke J, Henderson T, Hicks S, Hillesheim J, Hoffmann A, Holmes I, Howard N, Hubbard A, Hughes JW, Ilagan J, Irby J, Jean M, Kaur G, Kennedy R, Kowalski E, Kuang AQ, Kulchy R, LaCapra M, Lafleur C, Lagieski M, Li R, Lin Y, Looby T, Zubieta Lupo R, Mackie S, Marmar E, McKanas S, Moncada A, Mumgaard R, Myers CE, Nikolaeva V, Nocente M, Normile S, Novoa C, Ouellet S, Panontin E, Paz-Soldan C, Pentecost J, Perks C, Petruzzo M, Quinn M, Raimond J, Raj P, Rebai M, Riccardo V, Rigamonti D, Rice JE, Rosenthal A, Safabakhsh M, Saltos A, Shanahan J, Silva Sa M, Song I, Souza J, Stein-Lubrano B, Stewart IG, Sweeney R, Tardocchi M, Tinguely A, Vezinet D, Wang X, Witham J.
Reinke ML, et al.
Rev Sci Instrum. 2024 Oct 1;95(10):103518. doi: 10.1063/5.0218254.
Rev Sci Instrum. 2024.
PMID: 39417663
SPARC's first campaign plan is to achieve Qfus > 1 using an ICRF-heated, <10 MW, high current, Ip 8.5 MA, L-mode fueled by D-T gas injection, and its second campaign will investigate H-mode operations in D-D. ...
SPARC's first campaign plan is to achieve Qfus > 1 using an ICRF-heated, <10 MW, high current, Ip 8.5 MA, L-mode fueled by D-T …