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Nuclear Experiment

arXiv:2007.02659 (nucl-ex)
[Submitted on 6 Jul 2020]

Title:Photo-excitation production of medically interesting isomers using high-intensity γ-ray source

Authors:Wan-ting Pan, Hao-yang Lan, Zhi-guo Ma, Zhi-chao Zhu, Wen Luo
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Abstract:Photon-induced nuclear excitation (i.e. photo-excitation) can be used for production of nuclear isomers, which have potential applications in astrophysics, energy storing, and medical diagnosis and treatment. This paper presents a feasibility study on production of four nuclear isomers ({99m}^Tc, {103m}^Rh and {113m, 115m}^In) using high-intensity {\gamma}-ray source based on laser-electron Compton scattering (LCS), for use in the medical diagnosis and treatment. The decay properties and the medical applications of these nuclear isomers were reviewed. The cross-section curves, simulated yields and activity of product of each photo-excitation process were calculated. The cutoff energy of LCS {\gamma}-ray beam is optimized by adjusting the electron energy in order to maximize the yields as well as the activities of photo-excitation products. It is found that the achievable activity of above-mentioned isomers can exceed 10 mCi for 6-hour target irradiation at an intensity of the order of 10^{13} {\gamma}/s. Such magnitude of activity satisfies the dose requirement of medical diagnosis. Our simulation results suggest the prospect of producing medically interesting isomers with photo-excitation using the state-of-art LCS {\gamma}-ray beam facility.
Comments: 15 pages, 6 figures and 1 table
Subjects: Nuclear Experiment (nucl-ex); Applied Physics (physics.app-ph); Plasma Physics (physics.plasm-ph)
Cite as: arXiv:2007.02659 [nucl-ex]
  (or arXiv:2007.02659v1 [nucl-ex] for this version)
  https://doi.org/10.48550/arXiv.2007.02659
arXiv-issued DOI via DataCite
Journal reference: Applied Radiation and Isotopes 168 (2021) 109534
Related DOI: https://doi.org/10.1016/j.apradiso.2020.109534
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Submission history

From: Wen Luo [view email]
[v1] Mon, 6 Jul 2020 11:37:12 UTC (2,872 KB)
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