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dc.contributor.authorGómez Moreno, Bernardo-
dc.date.accessioned2021-10-15T17:09:26Z-
dc.date.available2021-10-15T17:09:26Z-
dc.date.issued2014-11-28-
dc.identifier.urihttps://repositorio.accefyn.org.co/handle/001/828-
dc.description.abstractSe presentan los fundamentos y desarrollo histórico de los aceleradores de partículas, detallando en el sincrotrón, en el principio de estabilidad de fase, principio de sincrotrón. Se introducen los anillos de almacenamiento, acumuladores como sincrotrones de campo magnético constante. Para sincrotrones de electrones, se presenta la radiación de sincrotrón y el aprovechamiento de esta radiación con los onduladores como fuentes de rayos-X. Se destacan las propiedades de la radiación de onduladores para aplicaciones en ciencias, tecnologías e industria. Esto motiva para presentar una propuesta de un centro de radiación de sincrotrón para Colombia, con sincrotrón de electrones en modo de anillo de almacenamiento y onduladores como emisores de rayos-X, con múltiples aplicaciones para investigación, desarrollo e innovación en ciencia, tecnología e industria.spa
dc.description.abstractThe foundations and historical development of particle accelerators are presented in this article, detailing on the synchrotron, the principle of phase stability, synchrotron principle. Storage rings, synchrotrons at constant magnetic field, are introduced. For the electron synchrotron, synchrotron radiation is presented and how to exploit it with the use of undulators as X-ray sources. Radiation properties of undulators are highlighted for applications in science and industry. This motivates to present a proposal for a synchrotron radiation center for Colombia with an electron synchrotron operating as storage ring and undulators as X-ray emitters, for multiple applications for research, development and innovation in science, technology and industry.eng
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dc.publisherAcademia Colombiana de Ciencias Exactas, Físicas y Naturalesspa
dc.rightsCreative Commons Attribution-NonCommercial-ShareAlike 4.0 Internationalspa
dc.rights.urihttps://creativecommons.org/licenses/by-nc/4.0/spa
dc.titleSuplemento Aceleradores para Colombiaspa
dc.typeArtículo de revistaspa
dcterms.audienceEstudiantes, Profesores, Comunidad científicaspa
dcterms.referencesD. Bohm, L. Foldy, “The Theory of the Synchrotron”, Physical Review, Vol. 70, No. 5 and 6, September 1 and 15, 1946, p. 249 – 258.spa
dcterms.referencesJ. D. Cockcroft, E. T. S. Walton, “Experiments with High Velocity Positive Ions – Further developments in the method of obtaining High Velocity Positive Ions”, Communicated by Lord Rutherford, Proceedings of the Royal Society, A, Vol. 136, February 23, 1932, p. 619 – 630.spa
dcterms.referencesErnest D. Courant, Stanley Livingston, Hartland S. Snyder, “The Strong-Focusing Synchrotron – A New High Energy Accelerator”, Physical Review, Vol.88, No.5, December 1, 1952, p. 1190 – 1196.spa
dcterms.referencesE. D. Courant and H. S. Snyder, “Theory of the Alternating-Gradient Synchrotron”, (July 15, 1957), Annals of Physics, Vol. 281, 2000, p. 360 – 408.spa
dcterms.referencesErnest D. Courant, Hartland S. Snyder, “Theory of the Alternating-Gradient Synchrotron”, Annals of Physics, No.3, 1958, p. 1 – 48.spa
dcterms.referencesR. J. Van de Graaff, K. T. Compton, L. C. Van Atta, “The Electrostatic Production of High Voltage for Nuclear Investigations”, Physical Review, Vol. 43, No. 3, February 1, 1933, p. 149 – 157spa
dcterms.referencesD. W. Kerst, “Acceleration of Electrons by Magnetic Induction”, Physical Review, Vol. 58, November 1, 1940, p. 841spa
dcterms.referencesD. W. Kerst, “The Acceleration of Electrons by Magnetic Induction”, Physical Review, Vol. 60, July 1, 1941, p. 47 – 53.spa
dcterms.references. W. Kerst, “Electronic Orbits in the Induction Accelerator”, Physical Review, Vol. 60, July 1, 1941, p. 53 – 58.spa
dcterms.referencesErnest O. Lawrence, Stanley Livingston, “The Production of High Speed Light Ions without the Use of High Voltages”, Physical Review, Vol. 40, April 1, 1932, p. 19 – 35spa
dcterms.referencesErnest O. Lawrence, Donald Cooksey, “On the Apparatus for the Multiple Acceleration of Light Ions to High Speeds”, Physical Review, Vol. 50, December 15, 1936, p. 1131 – 1140.spa
dcterms.referencesErnest O. Lawrence, “The evolution of the cyclotron”, Nobel Lecture, December 11, 1951spa
dcterms.referencesEdwin M. McMillan, “The Synchrotron – A Proposed High Energy Particle Accelerator”, University of California, Berkeley, California, Physical Review, September 5, 1945, p.143-144spa
dcterms.referencesEdwin M. McMillan, “Radiation from a Group of Electrons Moving in a Circular Orbit”, University of California, Berkeley, California, Physical Review, Vol.68, September 5, 1945, p.144-145.spa
dcterms.referencesDavid H. Sloan, Ernest O. Lawrence, “The Production of Heavy High Speed Ions without the Use of High Voltages” – (Linear Accelerator), Physical Review, Vol. 38, December 1, 1931, p. 2012 – 2032spa
dcterms.referencesVladimir I. Veksler, “A new method of accelerating relativistic particles”, Comptes Rendus de l’Academie Sciences de l’URSS, Vol.43, No.8, 1944, p. 329 – 331.spa
dcterms.referencesVladimir I. Veksler et al., “The 10 BeV Proton Synchrotron of the Academy of Sciences USSR”, All-Union Conference on the Physics of High Energy Particles, Academy of Sciences USSR, Moscow, 1956spa
dcterms.referencesPedro Waloschek, “The Infancy of Particle Accelerators: Life and Work of Rolf Wideröe”, Vieweg & Sohn Verlagsgesellschaft mbH, Brauschweig, Wiesbaden, 1994, ISBN-3-528-06586-9. DESY-Report 94-039, DESY, Hamburg, 1994, ISSN-0418-9833.spa
dcterms.referencesRolf Wideröe, “Wideröe’s original copy-books from 1923 to 1928”, ETH-Libr., Zurich, Hs 903: p. 633 – 638spa
dcterms.referencesRolf Wideröe, “Über ein neues Prinzip zur Herstellung hoher Spannungen”, Archiv für Elektrotechnik, Vol. 21, 1928, p.387spa
dcterms.referencesMario Conte, William W. MacKay, “An Introduction to the Physics of Particle Accelerators”, World Scientific Publishing Co., Singapore, 2008, ISBN-13-978-981-277-961-8.spa
dcterms.referencesRobert W. Hamm, Marianne E. Hamm, “Industrial Accelerators and their Applications”, World Scientific Publishing Co., Singapore, 2012, ISBN-978-981-4307-04-8spa
dcterms.referencesJohn David Jackson, “Classical Electrodynamics”, Third Edition, John Wiley & Sons, Inc., New York, 1999, ISBN-0-471-30932-Xspa
dcterms.referencesStanley Livingston, John P. Blewett, “Particle Accelerators”, McGraw-Hill Book Co., New York, 1962, Library of Congress Catalog Card Number 61-12960spa
dcterms.referencesAndrew Sessler, Edmund Wilson, “Engines of Discovery”, World Scientific Publishing Co.,Singapore, 2007, ISBN-13-978-981-270-071-1, ISBN-10-981-270-071-4spa
dcterms.referencesKlaus Wille, “The Physics of Particle Accelerators – An Introduction”, Oxford University Press, Oxford, 2005, ISBN-0-19-850549-3spa
dcterms.referencesEdmund Wilson, “An Introduction to Particle Accelerators”, Oxford University Press, Oxford, 2006, ISBN-0-19-850829-8spa
dcterms.referencesOliver Brunke ; Kathleen Brockdorf ; Susanne Drews ; Bert Müller ; Tilman Donath ; Julia Herzen ; Felix Beckmann, “Comparison between x-ray tube-based and synchrotron radiation-based μCT”, Proc. SPIE 7078, Developments in X-Ray Tomography VI, 70780U (September 16, 2008); doi:10.1117/12.794789spa
dcterms.referencesJeff C. Bryan, “Introduction to Nuclear Science”, CRC Press, Taylor & Francis Group, Boca Raton, Florida, 2009, ISBN-978-1-4200-6164-2spa
dcterms.referencesC. Bula Villarreal, B. Gómez Moreno, “Beam Hardening Correction for Signal to Thickness Calibration in Digital Radiographies with Medipix2 Detector”, Revista Colombiana de Física, Vol. 45, No.1 de 2013, pp. 54 – 59spa
dcterms.referencesL. Grodzins, “Optimum energies for x-ray transmission tomography of small samples: Applications of synchrotron radiation to computerized tomography”, Nuclear Instruments and Methods in Physics Research, Volume 206, Issue 3, 1 March 1983, Pages 541–545.spa
dcterms.referencesJ R Helliwell, “Synchrotron X-radiation protein crystal-lography: instrumentation, methods and applications”, Review Article, Reports on Progress in Physics, Volume 47, Number 11, (1984), p.1403. doi:10.1088/0034-4885/47/11/001.spa
dcterms.referencesM. Krumrey, M. Gerlach, F. Scholze, G. Ulm, “Calibration and characterization of semiconductor X-ray detectors with synchrotron radiation”, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Volume 568, Issue 1, 30 November 2006, pp. 364–368.spa
dcterms.referencesC.F. Roa García, B. Gómez Moreno, “Tomography with Medipix2 Semiconductor Pixel Detector”, Revista Colombiana de Física, Vol. 43, No.2 de 2011, pp. 318 – 322.spa
dcterms.referencesBrian Rodricks, Roy Clarke, Robert Smither and Alain Fontaine, “A virtual phase CCD detector for synchrotron radiation applications”, Review of Scientific Instruments > Volume 60, Issue 8, 2586 (1989); http://dx.doi.org/10. 1063/1.1140675.spa
dcterms.referencesT Buonassisi, M Heuer, O.F Vyvenko, A.A Istratov, E.R Weber, Z Cai, B Lai, T.F Ciszek, R Schindler, “Applications of synchrotron radiation X-ray techniques on the analysis of the behavior of transition metals in solar cells and single-crystalline silicon with extended defects”, Physica B: Condensed Matter, Volumes 340–342, 31 December 2003, pp. 1137–1141spa
dcterms.referencesY. L. Soo, S. Huang, Y. H. Kao and A. D. Compaan, “Investigation of interface morphology and composition mixing in CdTe/CdS heterojunction photovoltaic materials using synchrotron radiation”, Journal of Applied Physics, Volume 83, Issue 8, 1998, pp.4173, http://dx.doi.org/10. 1063/1.367171.spa
dcterms.referencesE.W. Becker, W. Ehrfeld, P. Hagmann, A. Maner, D. Münchmeyer, “Fabrication of microstructures with high aspect ratios and great structural heights by synchrotron radiation lithography, galvanoforming, and plastic moulding (LIGA process)”, Microelectronic Engineering, Volume 4, Issue 1, May 1986, Pages 35–56spa
dcterms.referencesYoshihiro Hirata, “LIGA process – micromachining technique using synchrotron radiation lithography – and some industrial applications”, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, Ionizing Radiation and Polymers, Volume 208, August 2003, Pages 21–26.spa
dcterms.referencesK. Kobayashi, M. Yabashi, Y. Takata, T. Tokushima, S. Shin, K. Tamasaku, D. Miwa, T. Ishikawa, H. Nohira, T. Hattori, Y. Sugita, O. Nakatsuka, A. Sakai and S. Zaima, “High resolution-high energy x-ray photoelectron spectroscopy using third-generation synchrotron radiation source, and its application to Si-high k insulator systems”, Appl. Phys. Lett. 83, 1005 (2003); http://dx.doi.org/10.1063/1.1595714.spa
dcterms.referencesP Pianetta, K Baura, A Singha, S Brennan, Jonathan Kerner, D Werho, J Wang, “Application of synchrotron radiation to TXRF analysis of metal contamination on silicon wafer surfaces”, Proceedings of the 11th International Conference on Thin Films, Thin Solid Films, Volume 373, Issues 1–2, 3 September 2000, Pages 222–226..spa
dcterms.referencesD W L Tolfree, “Microfabrication using synchrotron radi-ation”, Reports on Progress in Physics Volume 61 Number 4, 1998, p.313.spa
dcterms.referencesDavid C. Copley M.A., Jeffrey W. Eberhard Ph.D., Gregory A. Mohr Ph.D., “Computed tomography part I: Introduction and industrial applications”, JOM, The Journal of The Minerals, Metals & Materials Society (TMS), January 1994, Volume 46, Issue 1, pp 14-26.spa
dcterms.referencesRobert W. Hamm., “Industrial Accelerators”, Reviews of Accelerator Science and Technology, Vol. 1 (2008), pp 163 – 184.spa
dcterms.referencesH. F. Poulsen, S. Garbe, T. Lorentzen, D. Juul Jensen, F. W. Poulsen, N. H. Andersen, T. Frello, R. Feidenhans’l and H. Graafsma, “Applications of High-Energy Synchrotron Radiation for Structural Studies of Polycrystalline Materials”, Journal of Synchrotron Radiation, Volume 4, Part 3 (May 1997), pp.147-154.spa
dcterms.referencesP. Spanne, J. F. Thovert, C. J. Jacquin, W. B. Lindquist, K. W. Jones, and P. M. Adler, “Synchrotron Computed Microtomography of Porous Media: Topology and Transports”, Phys. Rev. Lett. 73, 2001.spa
dcterms.referencesYuyang Li and Fei Qi, “Recent Applications of Synchrotron VUV Photoionization Mass Spectrometry: Insight into Combustion Chemistry”, Accounts of Chemical Research 2010 43 (1), 68-78spa
dcterms.referencesP. Tafforeau, R. Boistel, E. Boller, A. Bravin, M. Brunet, Y. Chaimanee, P. Cloetens, M. Feist, J. Hoszowska, J.-J. Jaeger, R.F. Kay, V. Lazzari, L. Marivaux, A. Nel, C. Nemoz, X. Thibault, P. Vignaud, S. Zabler, “Applications of X-ray synchrotron microtomography for non-destructive 3D studies of paleontological specimens”, Applied Physics A, May 2006, Volume 83, Issue 2, pp 195-202.spa
dcterms.referencesgo Amaldi and Gerhard Kraft, “Recent applications of SUynchrotrons in cancer therapy with Carbon Ions”, Europhysics News, Volume 36, Number 4, July-August 2005spa
dcterms.referencesP Suortti and W Thomlinson, “Medical applications of synchrotron radiation”, Physics in Medicine and Biology, Volume 48, Number 13, Received 24 January 2003, Published 17 June 2003.spa
dcterms.referencesC.A. Arredondo, W. Vallejo, J. Hernandez, G. Gordillo, “In(O,OH)S/AgInS2 absorbent layer/buffer layer system for thin film solar cells”, Photovoltaic Specialists Conference (PVSC), 38th IEEE, 3-8 June 2012.spa
dcterms.referencesD. Betancourth G., J. F. Gómez C., J. C. Mosquera, L. Tirado-Mejía, “Análisis por difracción de rayos x de rocas provenientes de región esmeraldífera”, Scientia et Technica, ISSN 0122-1701, Vol. 1, Nº. 44, 2010, pp. 257-260. Trabajo conjunto de la Universidad Tecnológica de Pereira y la Universidad del Quindío, Colombia.spa
dcterms.referencesM. A. Botero-Londoño, G. Gordillo, C. Calderon, “Preparación y estudio de películas delgadas de ZnS y ZnS:In”, Revista Colombiana de Física, Vol 45, No 2 (2013), pp.168 – 171spa
dcterms.referencesJ.C.Briceño-Triana, A.E.García-Torres, O. Solano, D.M. Sánchez, D.Piñeros, R.Beltrán, “Use of porcine small intestine submucosa conduits as a vascular graft: Initial in vivo results”, ed. Lippincott Williams & Wilkins, Asaio Journal ISSN: 1058-2916, vol.52, fasc.2, 2006, pp.13A – 13A.spa
dcterms.referencesJ.C. Briceño-Triana, J.A. Arias, A. Zuluaga, M. Hernández, “Hemodynamics of Carotid Stenosis: A Diagnostic Image Characterization and Computational Study”, ed. Lippincott Williams & Wilkins, Asaio Journal ISSN: 1058-2916, vol.52, fasc.2, 2006, pp.57A – 57A.spa
dcterms.referencesA. A. García, P. Y. Moreno, J. A. García, L. Giraldo, J.C. Moreno-Piraján, “Estudio de parámetros estructurales en la carbonización y activación de un carbón colombiano mediante difraccion de rayos X”, Revista de química teórica y aplicada, ISSN 0001-9704, Vol. 65, Nº. 535, 2008, pp. 230-235.spa
dcterms.referencesJ. Mojica, J.J. Ipus, G.A. Pérez-Alcázar, “Caracterización de arcillas colombianas por espectroscopía Mössbauer y difracción de rayos-X”, Revista de la Sociedad Colombiana de Física, ISSN-e 0120-2650, Vol. 37, Nº. 1, 2005, pp. 187-190spa
dcterms.referencesH. P. Quiroz, A. Dussan, D.A. Landínez Téllez, J. Roa-Rojas, Universidad Nacional de Colombia - Sede Bogotá, “Caracterización del hormigón de 3000psi (20 mpa) utilizando difracción de rayos X”, Cemento Hormigón, ISSN 0008-8919, Nº. 961, 2014 , pp. 52-55spa
dcterms.referencesH. Rodríguez M., “Estado Actual de la I&D de las FENR en Colombia”, Colciencias, 1982, pp. 263.spa
dcterms.referencesH. Rodríguez M., “Desarrollo de la energía solar en Colombia y sus perspectivas”, Revista de ingeniería. Universidad de los Andes. Bogotá, Colombia., rev.ing. ISSN. 0121-4993. Nov. 2008spa
dcterms.referencesF. Shlieper, “Análisis avanzado de componentes electrónicos y conexiones utilizando tecnología microfocus de rayos X”, Revista Española de Electrónica, ISSN 0482-6396, Nº 568, 2002, pp. 58-62spa
dcterms.referencesC. Ávila Bernal, B. Gómez Moreno, “Grupo de Física de Altas Energías de la Universidad de los Andes: Veinte años de investigación en la frontera de las altas energías”, Colección Sello 60 Años, Universidad de los Andes, Ediciones Uniandes, Abril de 2010, ISBN 978-958-695-477-8.spa
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dc.rights.creativecommonsAtribución-NoComercial 4.0 Internacional (CC BY-NC 4.0)spa
dc.identifier.doihttps://doi.org/10.18257/raccefyn.155-
dc.subject.proposalAceleradores de partículasspa
dc.subject.proposalParticle acceleratorseng
dc.subject.proposalSincrotronesspa
dc.subject.proposalSynchrotronseng
dc.subject.proposalRadiación de sincrotrónspa
dc.subject.proposalSynchrotron radiationeng
dc.subject.proposalOnduladoresspa
dc.subject.proposalUndulatorseng
dc.type.coarhttp://purl.org/coar/resource_type/c_6501spa
dc.relation.ispartofjournalRevista de la Academia Colombiana de Ciencias Exactas, Físicas y Naturalesspa
dc.relation.citationvolume38spa
dc.relation.citationstartpage71spa
dc.relation.citationendpage88spa
dc.publisher.placeBogotá, Colombiaspa
dc.contributor.corporatenameAcademia Colombiana de Ciencias Exactas, Físicas y Naturalesspa
dc.coverage.countryColombia-
dc.relation.citationissueSuplementospa
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