A diverted plasma pulse from our successful ST40 spherical tokamak physics campaign @tokamakenergy6400
A diverted plasma pulse from our successful ST40 spherical tokamak physics campaign  @tokamakenergy6400
Uploaded November 2023 | Updated September 2026, 2 weeks ago
Watch a ‘diverted’ plasma pulse from our latest successful ST40 campaign, which has helped advance our commercial fusion mission following a series of upgrades to our record-breaking ST40 spherical tokamak.

In a diverted configuration, the magnetically confined plasma is separated from the centre post and walls of the device and its exhaust is directed to a dedicated ‘divertor’ region that extracts heat and particles. This keeps the core plasma cleaner and significantly improves overall performance. The campaign, which ended at the end of September 2023, was focused on improving understanding and developing high-performance diverted plasma scenarios in a high field spherical tokamak.

This work is expanding our understanding and helping to further validate future power plant designs on our path to delivering clean, secure and affordable fusion energy.
A diverted plasma pulse from our successful ST40 spherical tokamak physics campaignDemo4 fusion magnet breakthrough: Behind the scenesFusion Pioneers Jack Astbury - Plasma physics to globally deployable energyA History of Spherical TokamaksManaging operations for fusion energyWhat is a high temperature superconductor?Fusion Pioneer Yuichi Takase - Working towards commercial fusion energyFusion Pioneers Max Rowland & Vicky Bayliss - Testing our HTS magnet performance and durabilityFusion Pioneer Rob Bamber - ST40 Chief Engineer - introduces our world-leading spherical tokamakWhat is Merging Compression?What is fusion? A short introduction to fusion energyDeveloping novel superconducting magnets for fusion energy
Tokamak Energy |

A 'diverted' plasma pulse from our successful ST40 spherical tokamak physics campaign

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER