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KRONOS FUSION ENERGYWHITEPAPER 079 / 104
The Fuel Cycle — Tritium & Helium-3

Breeding at 1.8: How Hyperion Makes More Than It Burns

The breeder's surplus tritium is the whole point — and the breeding ratio is a design lever set to 1.8.

Hyperion breeds 1.8 units of tritium for every unit it burns. That surplus above self-supply is what lets the breeder deliver tritium to the national requirement and seed the helium-3 stream at once — and the ratio is a lever the design sets, not a constant it inherits.

The science

A tritium breeding ratio above 1.0 means net production. Hyperion's blanket scan sets the ratio at 1.8, leaving a 0.8 surplus above what the plasma consumes. That surplus, sized by the breeding-ratio lever, is delivered as product tritium — some to the national requirement, some ripening into helium-3.

Why it matters

The breeding ratio is the knob that makes Hyperion a foundry rather than a self-consuming reactor. Setting it at 1.8 sizes the surplus to a real requirement, and treating it as a lever means the output can be tuned to demand rather than fixed by physics.

The numbers

Tritium breeding ratio1.8
Surplus over self-supply0.8
Surplus delivered asproduct tritium + He-3 accrual
Ratio typedesign lever
Sourceblanket scan
Straight answersThe 1.8 breeding ratio is a computed lever setting demonstrated in the blanket scan; the as-built blanket is where it is proven, and the surplus sizing follows a stated requirement, not a maximum.
Kronos is the fusion company that shows its work. Every figure here traces to the openly deposited Kronos simulation programme and design-point records (CC BY 4.0). Read the series, run the code, check us. — All whitepapers · Read the formal papers & open data
Conceptual design and simulation study; no machine has been built. Quantitative values are simulation-derived and carry the feasibility gates named in the text; superseded values are kept in the record with era labels. This document is informational and is not an offer of securities. © 2026 Kronos Fusion Energy, Inc. · Los Angeles, California.
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Content reviewed August 2026 · design-and-simulation stage