Skip to content
Fusion Industry Association
  • ABOUTExpand
    • ABOUT THE FIA
    • STAFF
    • BOARD OF DIRECTORS
    • JOB OPPORTUNITIES
  • POLICYExpand
    • PUBLIC PRIVATE PARTNERSHIPS
    • REGULATORY CERTAINTY
    • SCALING THE INDUSTRY
  • NEWSExpand
    • FROM THE FIAExpand
      • BLOG
      • INDUSTRY REPORTS
      • FUSION NEWS VIDEOS
    • FUSION IN THE NEWS
    • FOR THE MEDIA
  • MEMBERSHIPExpand
    • FULL MEMBERS
    • AFFILIATE MEMBERS
    • EDUCATION & RESEARCH PARTNERS
  • EVENTSExpand
    • EVENTS
    • UK FUSION FORUM 2026
    • 2027 FIA CONFERENCE
  • LEARNExpand
    • ABOUT FUSION ENERGY
    • FAQ
    • FUSION VS. FISSION
    • PATH TO COMMERCIAL FUSION
  • CONTACT
BECOME A MEMBER
Fusion Industry Association

Euratom

Fusion Industry Association Support for New UK Fusion Funding
Partnering with Governments

Fusion Industry Association Support for New UK Fusion Funding

ByAndrew September 7, 2023March 25, 2025

The Fusion Industry Association welcomes the U.K. Government’s ambitious new programme for fusion development and commercialisation as an alternative to Euratom association.

Read More Fusion Industry Association Support for New UK Fusion FundingContinue

Fusion Industry Association - the voice of the private fusion industry

ABOUT
POLICY
MEMBERSHIP
NEWS
FAQ
MEDIA
LEARN
EVENTS
CONTACT

FOLLOW FUSION INDUSTRY ASSOCIATION

  • YouTube
  • X
  • LinkedIn
  • Bluesky

Subscribe and get fusion industry updates and stay on top of global fusion progress.

* indicates required

© 2026 Fusion Industry Association - Messaging, design and development by Mind Over Markets

Common Fusion Approaches

Magnetic confinement: Plasma is heated to 100 million °C or more, then squeezed and held in place by strong magnetic fields, allowing many fusion reactions to occur. (Example: tokamaks, stellarators)

Inertial confinement: Tiny fuel pellets are struck by powerful lasers. The outer layer explodes outward, compressing the core to fusion conditions for a few nanoseconds, producing a brief but intense pulse of energy from each pellet. (Example: National Ignition Facility)

Hybrid systems: Combine compression (e.g., from lasers, plasma pistons, or mechanical impact) with moderate magnetic fields to reduce energy losses and improve confinement.

Electrostatic fusion: Uses high electric potentials to accelerate ions toward a central reaction zone, causing them to collide at high energies and fuse. The ions are guided and confined by electric fields rather than magnets, creating a compact environment for fusion reactions.

  • ABOUT
    • ABOUT THE FIA
    • STAFF
    • BOARD OF DIRECTORS
    • JOB OPPORTUNITIES
  • POLICY
    • PUBLIC PRIVATE PARTNERSHIPS
    • REGULATORY CERTAINTY
    • SCALING THE INDUSTRY
  • NEWS
    • FROM THE FIA
      • BLOG
      • INDUSTRY REPORTS
      • FUSION NEWS VIDEOS
    • FUSION IN THE NEWS
    • FOR THE MEDIA
  • MEMBERSHIP
    • FULL MEMBERS
    • AFFILIATE MEMBERS
    • EDUCATION & RESEARCH PARTNERS
  • EVENTS
    • EVENTS
    • UK FUSION FORUM 2026
    • 2027 FIA CONFERENCE
  • LEARN
    • ABOUT FUSION ENERGY
    • FAQ
    • FUSION VS. FISSION
    • PATH TO COMMERCIAL FUSION
  • CONTACT