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Development of Steady State Compact Fusion Neutron Sources

Development of Steady State Compact Fusion Neutron Sources

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  • More about Development of Steady State Compact Fusion Neutron Sources

Fusion neutron sources have numerous practical applications, and achieving higher neutron yields and fluxes in compact fusion neutron sources (CFNSs) can improve these applications. This publication summarizes the project's main results and findings to support stakeholders in developing CFNSs.

Format: Paperback / softback
Length: 120 pages
Publication date: 30 July 2022
Publisher: IAEA

Fusion neutron sources hold immense practical significance, encompassing a wide range of applications. These include the rigorous testing of materials and components through irradiation, the facilitation of the production of valuable isotopes like tritium, the propulsion of subcritical cores, the characterization of spent nuclear fuel, and the manufacturing of medical isotopes. By striving to enhance neutron yields and fluxes in compact fusion neutron sources (CFNSs), these applications can be further optimized. This publication serves as a compilation stemming from an IAEA-coordinated research project on this subject. It presents the project's principal results and findings, with the primary objective of providing valuable support to stakeholders involved in the development of CFNSs as they transition from conceptual to engineering design.

Fusion neutron sources have many important practical uses, such as irradiation testing of materials and components, facilitating the production of various isotopes such as tritium, driving subcritical cores, characterizing spent nuclear fuel, and manufacturing medical isotopes. All these applications can be potentially improved by achieving higher neutron yields and fluxes in compact fusion neutron sources (CFNSs). This publication is a compilation arising from an IAEA coordinated research project on this topic and presents the project's main results and findings with the aim of supporting stakeholders in the development of CFNSs in the transition from conceptual to engineering design.

Weight: 350g
Dimension: 297 x 210 (mm)
ISBN-13: 9789201227225

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