Magnetic Confinement Fusion (MCF)
A fusion approach that uses magnetic fields to confine a hot plasma for extended periods. Tokamaks and stellarators are the dominant MCF concepts.
Verified Primary Sources
- → LANL MagnetizedTargetFusion 1994 (p. 2) — 1994 — Los Alamos National Laboratory
- → LANL EconomicalFusionPower 2017 (p. 2) — 2017 — Los Alamos National Laboratory
- → LANL EconomicalFusionPower 2017 (p. 3) — 2017 — Los Alamos National Laboratory
- → LANL Hsu Economical Fusion 2017 (p. 2) — 2017 — Los Alamos National Laboratory
- → LANL Hsu Economical Fusion 2017 (p. 3) — 2017 — Los Alamos National Laboratory
Related Terms
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Timeline Mentions (8)
Project Sherwood declassified at Geneva Conference
Fusion research declassified at 2nd Atoms for Peace conference. Sherwood becomes CTR program.
Foundational FRC and MTF Research at LANL
Los Alamos National Laboratory (LANL) pioneers research into Field-Reversed Configuration (FRC) and Magnetized Target Fusion (MTF), establishing the scientific pedigree for future compact fusion progr
LANL FRC/MTF Research Era
Los Alamos National Laboratory pioneers research into Field-Reversed Configurations (FRCs) and Magnetized Target Fusion (MTF).
Sandia Phi-target Work Published
Sandia National Laboratory publishes early reports on Phi-target work, which remains a primary example of an integrated Magnetized Target Fusion (MTF) experiment.
MAGO project begins at VNIIEF (Russian nuclear weapons lab)
Russian MTF program at weapons lab. Communist Party decree. Same dual-use pattern as US.
Ninth IAEA Conference on Plasma Physics
The Ninth International Conference on Plasma Physics and Controlled Nuclear Fusion Research is held in Baltimore, Maryland, focusing on Tokamak experiments and plasma heating.
LANL adiabatic compression of FRCs
Foundational paper on compressive heating of FRC plasmas, later inherited by the CFR program.
Foundational FRC Compression Scaling Laws Published
M. Tuszewski et al. publish 'Adiabatic compression of elongated field-reversed configurations', establishing core heating mechanisms for MTF.