The Economics of Fusion Energy: From Demonstration to Market Viability
Date
2026-04-24
Authors
Advisors
Journal Title
Journal ISSN
Volume Title
Repository Usage Stats
views
downloads
Attention Stats
Abstract
This paper examines the economics of fusion energy as a source of firm, clean power in the United States. Using a Monte Carlo LCOE simulation across 10,000 iterations per development stage, I find that fusion's median cost declines from $313/MWh at first-of-a-kind to $45/MWh at nth-of-a-kind, competitive with utility-scale solar and wind. Capital expenditure is the dominant cost driver. I identify the hyperscaler data center market as fusion's most viable early commercial offtake channel, anchored by a revealed willingness to pay of $110-115/MWh for firm clean power. PJM capacity market revenues reduce fusion's effective NOAK LCOE to $30/MWh. The commercial case for fusion is not speculative, it depends on execution.
Type
Department
Description
Provenance
Subjects
Citation
Permalink
Citation
Killeen, Jack (2026). The Economics of Fusion Energy: From Demonstration to Market Viability. Master's project, Duke University. Retrieved from https://hdl.handle.net/10161/34513.
Collections
Except where otherwise noted, student scholarship that was shared on DukeSpace after 2009 is made available to the public under a Creative Commons Attribution / Non-commercial / No derivatives (CC-BY-NC-ND) license. All rights in student work shared on DukeSpace before 2009 remain with the author and/or their designee, whose permission may be required for reuse.
