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CENTRO NACIONAL DE ACELERADORES (CNA)

CENTRO NACIONAL DE ACELERADORES (CNA). Joaquín Gómez Camacho IMFP Benasque, 13 February 2009. MINISTERIO DE EDUCACION Y CIENCIA. Parque Tecnológico Cartuja’93, Avda.Thomas Alva Edison nº 7, E-41092 – Sevilla. Spain Phone: +34.95.4460553, Fax: +34.95.4460145 cna@us.es.

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CENTRO NACIONAL DE ACELERADORES (CNA)

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  1. CENTRO NACIONAL DE ACELERADORES (CNA) Joaquín Gómez Camacho IMFP Benasque, 13 February 2009

  2. MINISTERIO DE EDUCACION Y CIENCIA Parque Tecnológico Cartuja’93, Avda.Thomas Alva Edison nº 7, E-41092 – Sevilla. Spain Phone: +34.95.4460553, Fax: +34.95.4460145 cna@us.es

  3. CNA Personnel (Feb. 2009) • Staff (permanent, PhD): 6 • Doctors (temp): 11 • Licenciates (temp): 10 • Administration: 3 • Technicians: 5 • Total: 35

  4. Objectives and research lines • Materials science • Nuclear science and technology. • Accelerator mass spectrometry (AMS) • Production of PET isotopes and bio-medical research.

  5. User institutions (2007) • Total 56 • CSIC institutes 13 • U. Sevilla departments 4 • Foreign institutions 13 • Other spanish universities 7 • Companies 5 • Others (OPI, Museums,..) 12

  6. Accelerators in CNA • Tandem van de Graaff, 3MV • Tandetron, 1MV • Ciclotron, 18MeV (protons), 9MeV (deuterons)

  7. 3MV accelerator

  8. Beam lines (7)

  9. 800 nm-thick AlN on Si(100) with [O] = 0.6 at. % Determination of O by PIGE Detección de Rayos- γ a 871 keV emitidos por el primer estado excitado del 17O producido en la reacción 16O(d, p1γ)17O* a 1.43 MeV, θ=90º Yolanda Morilla García

  10. External beam Las muestras grandes pueden ser analizadas gracias al haz externo. En pocos minutos, se puede obtener, de manera no destructiva, la composición isotópica de objetos de valor artístico. Inés Ortega Feliú

  11. Pu (La) U (La) Pu (La) U (La) Micro-probe μ-PIXE A15 Scan 100x100 mm2 Mapa de concentración de Pu y U en partículas calientes provenientes del accidente nuclear de Palomares. Ambos elementos están confinados a la propia partícula. HP3 Scan 75x75 mm2 Maria del Carmen Jiménez Ramos y Javier García López

  12. Tracking detectors for FAIR

  13. Diamond detector tests (U. Huelva-GSI-CNA)

  14. Cyclotron 18 MeV (protons), 9 MeV (deuterons) 7 ports for production of radioisotopes PET: 18F, 11C, 13N, 15O 1 external beam: ionic implantation, radiation damage …

  15. Radio-pharmacy Biomolecules marked with 18F, 11C, 13NH3 y H215O used for research and diagnostics CNA provides FDG to PET centers. Contract with andalousian Health service.

  16. PET scanner for small animals • Application for pre-clinical research

  17. Images taken in CNA with 18F Juan José Chao Suances

  18. SARA, AMS system in CNA

  19. Dating by 14C measurements. • Samples of milligrams • 30 min measurements • 1% accuracy • Limit in 50000 years Isabel Gómez Martínez y Javier Santos Arévalo

  20. 239,240Pu measurements in sediments • Green: USA nuclear tests • Moratory between 1958 y 1961 • -Red: USSR tests • -Blue: French and chinese tests. AMS separates 239Pu from 240Pu. Measurement 30 min, 5% uncertainty. Detection limit 4 μBq. Elena Chamizo Calvo

  21. Vertical Objectives for 2010-2013 • Ion Beam Analysis Techniques: Remain as the national reference centre in IBA techniques, in material science, archeometry, environmental sciences. • Accelerator Mass Spectrometry: Consolidate as a European reference in AMS. through a service of 14C dating, Pu isotope separation, and research in accelerator mass spectrometry of different isotopes. • Nuclear Instrumentation: Become a national reference centre in the development of detectors and nuclear instrumentation, and offer a home basis for the nuclear and particle scientists working in large international facilities. • Molecular Imaging: Become a national reference in the development of new radio-pharmaceuticals, and the use of PET imaging techniques, in pre-clinical research in animals and clinical research in humans. • Irradiation: Become a reference laboratory to carry out certified irradiation tests, both with particles and photons, in circuits, solar panels, and other materials of interest for high technology and aero-space companies.

  22. Action 1: Construction of a photon irradiation laboratory:

  23. Action 2: Installation of a human PET scanner

  24. Action 3: Completion of the 14C dating service:

  25. Action 4: Installation of a detector laboratory in CNA:

  26. Action 5: Upgrade of the beam lines in the Tandem and Cyclotron:

  27. Practical cases of CNA usage • I wish to check the purity of my Si detector (IBA Service) • I wish to test the radiation hardness of my electronics (Proposal) • I wish my student/technician to get some some accelerator expertise (Stay-Course) • I wish to test the array I am collaborating in (Proposal-Collaboration) • I wish to develop a new beam line for my research (Letter of intent)

  28. http://www.centro.us.es/cna/ CNA is a user facility (ICTS) open to the spanish and international scientific community. The particle physics community is specially welcome to use the CNA facilities. cna@us.es

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