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Isotope Production in Fusion Systems

Plasma Physics 2026-03-24 v2 Nuclear Experiment

Abstract

Fusion systems producing isotopes via neutron-driven transmutation can achieve economic viability well before reaching energy breakeven. Incorporating carefully selected feedstock materials in a blanket allows fusion systems to generate both electrical power and high-value isotopes, expanding the space of viable concepts, significantly enhancing the economic value of fusion energy, and supporting an accelerated path to adoption. We calculate the value of this co-generation and derive a new economic breakeven condition based on net present value. At lower plasma gain, Qplas1Q_{\mathrm{plas}}\lesssim 1, high-value transmutation, such as medical radioisotopes, enables pure transmuter fusion systems operating at only watts to megawatts of fusion power: for example, a 3 megawatt system transmuting 102Ru99Mo{}^{102}\mathrm{Ru}\rightarrow{}^{99}\mathrm{Mo} could fulfill global 99Mo{}^{99}\mathrm{Mo} demand with Qplas1Q_{\mathrm{plas}} \ll 1. At higher gain Qplas3Q_{\mathrm{plas}}\gtrsim 3, it becomes viable to generate electricity in addition to isotopes. For example, co-production of electricity and gold, transmuted from mercury in a fusion blanket, can reduce the required plasma gain for economic viability from Qplas10Q_{\mathrm{plas}}\sim 10-100100 to Qplas3Q_{\mathrm{plas}}\sim 3-55. We further highlight techniques to enhance transmutation with asymmetric neutron wall loading. Fusion neutron-driven transmutation therefore offers a revenue-positive pathway for deploying fusion energy at terawatt-scale, starting from smaller watt-to-megawatt-scale machines for radioisotope production and then scaling up to co-producing electricity and gold in larger fusion power plants.

Keywords

Cite

@article{arxiv.2512.09242,
  title  = {Isotope Production in Fusion Systems},
  author = {J. F. Parisi and J. A. Schwartz and S. E. Wurzel and A. Rutkowski and J. Harter},
  journal= {arXiv preprint arXiv:2512.09242},
  year   = {2026}
}

Comments

25 pages, 30 figures