Primary Intelligence Asset

High Hopes – Can Compact Fusion Unlock New Power For Space And Air Transport?

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Executive Summary

Lockheed Martin's Skunk Works announced plans to develop a compact fusion reactor (CFR), with significant potential applications for deep-space and atmospheric propulsion. CFR project lead Tom McGuire explains that high power-to-weight fusion systems could enable trips to Mars within a month and power large transport aircraft via turbine heat exchangers. While technically challenging and carrying public perception hurdles, the effort builds on decades of engineering and a collaborative fusion research community.
Analysis Confidence: High
ST_CODE: NSPORT

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Source ID

DOC-HIGH-HOP

Process Date

Public archive record

Integrity Hash

SHA256-HIGHHOPESCAN...

Indexer Status

COMPLETE

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Introduction and Project Overview

The announcement by Lockheed Martin’s Skunk Works of plans to develop a compact fusion reactor (CFR) has potentially huge implications for future space and aircraft propulsion. Should the current round of experiments prove out the viability of the physics, then the scale, safety, and power of the concept means that CFRs could one day be used to power space craft on deep-space missions to Mars. They might also be small enough to power large transport and freighters of the future, converting thermal energy through heat exchangers to power turbines in place of combustion chambers. Here Tom McGuire, the inventor and leader of the Lockheed Martin CFR project, explains the basics of the concept.

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Lockheed Martin's Skunk Works announced plans to develop a compact fusion reactor (CFR), with significant potential applications for deep-space and atmospheric propulsion. CFR project lead Tom McGuire explains that high power-to-weight fusion systems could enable trips to Mars within a month and pow...