General Fusion Achieves Compressional Plasma Heating with LM26 Magnetized Target Fusion Machine
View original at globenewswire.comGeneral Fusion Achieves Compressional Plasma Heating with LM26 Magnetized Target Fusion Machine The results, submitted for peer review and publicly available, demonstrate significant progress toward key 1 keV electron temperature milestone VANCOUVER, British Columbia, June 22, 2026 (GLOBE NEWSWIRE) -- General Fusion In…
What we drew from this source
The claims Via News extracted from this document. We point to the source; we don't replace it.
LM26 results validate its operating principles and lay the foundation for planned increases in starting plasma parameters to enable compression to higher densities and temperatures.
60% confidenceGeneral Fusion is forging a new path in fusion with its uniquely practical MTF approach, and the LM26 results are key indicators of real-world progress toward targeted technical milestones.
60% confidencePlasma density and poloidal magnetic field both increased to 10 times starting values during compression, similar to or better than prior General Fusion test bed results but at significantly larger scale.
60% confidenceAn increase in neutron yield was observed during LM26 compression experiments.
60% confidenceThe LM26 experiments validated General Fusion's MTF approach, with observed increases in magnetic field, plasma density, and electron temperature consistent with modeling and simulation expectations.
60% confidenceNo significant plasma contamination by the lithium liner occurred during the stable compression phase of LM26 experiments.
60% confidenceSpring Valley vehicles have raised $920 million in four IPOs over the past five years.
60% confidenceAgreement between LM26 experiment results and theoretical models provides confidence that planned machine upgrades will enable more demanding plasma conditions.
60% confidenceLM26 achieved electron temperature of approximately 8.4 million degrees Celsius (0.72 keV +/- 0.08), representing more than 3 times increase during mechanical compression, believed to be a unique result for General Fusion's MTF approach.
60% confidence
