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How the weird and wonderful properties of magnetised laser plasmas could ignite fusion-energy research

Series
Theoretical Physics - From Outer Space to Plasma
Video Embed
Archie Bott explains how a promising scheme for fusion relies on a novel feature of hot laser-plasmas: introducing a magnetic field of the correct strength alters the plasma’s fundamental properties in a highly counterintuitive yet beneficial manner.
One key scientific breakthrough of 2022 was the achievement of fusion ignition; using the world’s largest laser facility, physicists created a plasma in which nuclear fusion reactions generated around 50% more energy than the laser energy required to get those reactions going. Arguably the hottest question in laser fusion-energy research right now is how to surpass this result.

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Theoretical Physics - From Outer Space to Plasma
Captioned

Stellarators: twisty tokamaks that could be the future of fusion

Georgia Acton introduces stellarators, discusses the features that distinguish them from tokamaks, highlight the challenges we currently face, and discusses how we might overcome them.
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Theoretical Physics - From Outer Space to Plasma

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Episode Information

Series
Theoretical Physics - From Outer Space to Plasma
People
Archie Bott
Keywords
fusion
Physics
laser
plasma
Department: Department of Physics
Date Added: 02/06/2023
Duration: 00:43:44

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