Magneto-Rayleigh-Taylor (MRT) Instability
An instability that occurs at the interface between a magnetized plasma and an accelerating conductor (liner), threatening the symmetry of liner implosions in MTF. Mitigating MRT is essential to FRCHX/MagLIF.
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)
Harris MRT Paper Published
E. G. Harris publishes a classic paper on Magneto-Rayleigh-Taylor (MRT) instability, identifying a finite growth rate for thin shells even at zero wavenumber.
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.
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.
Tuszewski Publishes Canonical FRC Review
M. Tuszewski publishes the definitive 'Field reversed configurations' in Nuclear Fusion, serving as the scientific bedrock for the LANL MTF program.