Production of 165Er with deuterons at IFMIF-DONES
Metadatos
Mostrar el registro completo del ítemAutor
López-Melero, E.; Arias De Saavedra Alias, Fernando; Da Silva, I.; Roldán Aranda, Andrés María; Praena Rodríguez, Antonio JavierEditorial
Elsevier
Materia
165Er direct route production Deuteron beam Auger-electron therapy
Fecha
2024-04-20Referencia bibliográfica
López Melero, E. et. al. 39 (2024) 101659. [https://doi.org/10.1016/j.nme.2024.101659]
Patrocinador
project PID2020.117969RB.I00 funded by MICIU/AEI /10.13039/5011000110 33; The EUROfusion Consortium funded by the European Union via the Euratom Research and Training Programme (Grant Agreement No 101052200 – EUROfusion); Spanish projects Junta de Andalucía (FEDER Andalucia 2014–2020); projects P20-00665 and B-FQM-156-UGR20; Spanish CDTI (Misiones DONES-EVO) (Contrato UGR-OTRI 5270); Junta de Andalucía, European Regional Development Fund (ERDF); Euratom Research and Training Programme (Grant Agreement No 101052200 – EUROfusion)Resumen
The production of radioisotopes for nuclear medicine is boosted by different international agencies. IFMIF-DONES will be an infrastructure where neutrons will be generated by the impact of a high-power deuteron beam onto a lithium jet target. At present, IFMIF-DONES studies the possibility of deflecting 0.1% of its standard 125 mA current of 40 MeV deuteron beam for the complementary applications to be conducted inside a new experimental hall. Such deuteron beam is being considered to be used for radioisotope production for nuclear medicine. Here, we discuss the production of a potential Auger-electron emitter radioisotope for therapy 165Er with 125
A deuterons on
Ho. Due to the high-power delivered onto the sample, we study by means of SolidWorks simulations a realistic device as cooling system for the holmium sample. Our results show a significant 165Er production in comparison with other experimental routes available in the literature.