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Become a DIII-D Partipicant

The DIII-D program is a national and international collaboration among ~90 institutions. Collaborators lead and manage elements of the program, generate ideas and innovations, lead experiments, build and operate diagnostics and equipment, analyze data, provide theory and modeling, and report and publish results. Please come join our effort.


The overall goal of the DIII-D program is to establish the scientific basis for the optimization of the tokamak approach to fusion energy. At the heart of the DIII-D program is the development of the basis for steady-state high performance Advanced Tokamak scenarios in support of burning plasmas and attractive fusion energy systems. The research program includes major elements of fusion science: transport, stability, energetic particles, pedestal and boundary physics. The hallmark of the DIII-D program is its emphasis on integration of these science issues and model validation.


The DIII-D program is committed to resolving critical issues to ensure the success of ITER, and to developing long pulse and steady-state scenarios that will enhance the scientific and technological benefit of ITER operation, and by developing model-based plasma control technology. The program is carrying out world leading experiments in stabilization of resistive wall modes and neoclassical tearing modes, pioneering work in control of edge instabilities, first wall erosion and migration experiments that address tritium retention in ITER, and experiments to validate safe rapid plasma shutdown in case of loss of control. DIII-D actively participates in the International Tokamak Physics Activity (ITPA) and internationally coordinated multi-machine experiments to investigate fusion science issues and integrated advanced scenario optimization, and to address ITER research needs.


New facility capabilities implemented in the last two years position the DIII-D program for an exciting experimental campaign. New capabilities include increased EC power and pulse duration, co plus counter neutral beam injec¬tion, density control for high triangularity double-null divertor plasmas, and many improved diagnostic measurements.


The DIII-D Internal Users Site is here. Information on the DIII-D Research Opportunities Forum for 2008 can be found here. DIII-D diagnostic needs and plans can be found at [http:/diii-d/Diagnostics here] and [http:/diii-d/DiagOpps here].


Learn more about DIII-D teams


DIII-D International Research Team

U.S. Labs Japan European Community Russia
ANL JAERI Cadarache (France) Ioffe
INEL JT-60U Culham (England) Keldysh
LANL JFT-2M Frascati (Italy) Kurchatov
LANL NIFS FOM (Holland) Moscow State
LLNL LHD IPP (Garching) Troitsk
ORNL Tsukuba U. Joint European Torus
PNL KFA (Germany)
PPPL Lausanne (Switzerland)
SNL


U.S. Universities Other International Industry
Alaska MIT ASIPP (China) CompX
Cal Tech Palomar CCFM (Canada) CPI
Colorado Texas Chalmers U. (Sweden) Creare
Columbia UCB Helsinki U. (Finland) FAR Tech
Georgia Tech UCI KAIST (Korea) Gycom
Hampton UCLA KBSI (Korea) HiTech Metallurgical
Lehigh UCSD SWIP (China) IR&T
Maryland Washington U. Alberta (Canada) Orincon
Wisconsin U. Toronto (Canada) Surmet
U. Wales (Wales) U. Wales (Wales)
TSI Research


DIII-D Program Contact

Title Name E-mail (@fusion.gat.com) Phone
Program Director Tony Taylor Taylor 858-455-3559
Deputy Program Director Dave Hill Hilldn 858-455-3234
Assistant Director Peter Petersen Petersen 858-455-3631
Experimental Science Mickey Wade Wade 858-455-4165
Operations Arnie Kellman Kellman 858-455-4430
Theory & Computational Science Vincent Chan Chanv 858-455-4162
Computer & Diagnostic Systems Réjean Boivin Boivin 858-455-4736
DIII-D Experimental Coordinator Chuck Greenfield Greenfield 858-455-3686
LLNL
Onsite Coordinator Steve Allen Allens 858-455-4137
ORNL
Onsite Coordinator Masanori Murakami Murakami 858-455-3362
PPPL
Onsite Coordinator Raffi Nazikian Nazikian 858-455-4164
UCLA
On-Site Coordinator Ed Doyle Doylej 858-455-3684
UCSD
Onsite Coordinator Rick Moyer Moyer 858-455-2275