Episodes > Season 4
Episode 176
09.01.2026

#176 – Turning a Can of Fuel Into a Fusion Star with Pacific Fusion

Hosted by Lisa Ann Pinkerton

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#176 – Turning a Can of Fuel Into a Fusion Star with Pacific Fusion

Hosted by Lisa Ann Pinkerton

In this episode of Earthlings 2.0, we speak with Will Regan, Founder and Chief Scientist of Pacific Fusion, about how the company is developing pulser-driven inertial fusion for eventual commercial deployment. Will breaks down how the system works, the scientific breakthroughs that have changed the outlook for commercial fusion, and why Pacific Fusion believes modularity and mass manufacturing could provide a path toward reliable fusion power plants. He also discusses the company’s recent prototype milestones, plans to demonstrate net energy gain by 2030, fusion’s regulatory and safety advantages, and what the next decade could hold for fusion energy on Earth and potentially in space. 

Check out our previous episodes on fusion: 

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Talking Points

  • Electricity is becoming a major bottleneck for AI data centers – The rapid growth of AI compute is driving greater demand for power. Theo explains that addressing this challenge will require a combination of energy efficiency, grid flexibility, new generation, storage, and other technologies rather than a single energy solution. 
  • Data center efficiency could unlock more capacity in the near term – While new power generation can take years to deploy, technologies that improve efficiency and flexibility can be implemented sooner. Better chips, cooling, system orchestration, batteries, and flexible loads could help data centers use existing grid capacity more effectively as AI demand grows. 
  • The shift from AI training to inference could reshape data center infrastructure – AI training has favored large, centralized data centers, but inference can operate across a wider range of computing environments. As inference grows, Theo expects opportunities for smaller data centers located closer to population centers, potentially changing how facilities are designed, powered, and distributed.

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