Diagnóstico de inclusiones magmáticas y cóndrulos mediante Espectroscopía Raman
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2023
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11/07/2022
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Universidad Complutense de Madrid
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Abstract
La espectroscopía Raman se considera entre las técnicas instrumentales más tecnológicamente avanzadas como resultado de varias innovaciones tecnológicas recientes(detectores CCD de alta sensibilidad, sistemas de fibra óptica, miniaturización del láser y componentes ópticos y electrónicos)y que han permitido el desarrollo práctico de nuevas generaciones de instrumentos capaces de ser utilizados en pruebas de campo, tanto en superficie como en configuración remota, o su integración en misiones planetarias robotizadas. Y en la presente Tesis Doctoral queremos explorar las posibilidades de esta técnica como método de diagnóstico y análisis en diversas áreas relacionadas con las Geociencias. Así, nuestro objetivo principal es demostrar cómo la espectroscopia Raman puede aportar información clave campos tan aparentemente distantes como la restauración del patrimonio material o las ciencias geoplanetarias...
Raman spectroscopy is considered among the most technologically advanced instrumental techniques as a result of several recent technological innovations (high sensitivity CCD detectors, fibre optic systems, laser miniaturisation and optical and electronic components) and which have allowed the practical development of new generations of instruments capable of being used in field tests, both on the surface and in remote configuration, or their integration in robotic planetary missions. In this Doctoral Thesis we want to explore the possibilities of this technique as a method of testing and analysis in various fields related to the Geosciences. Therefore, our main objective is to demonstrate the potential of Raman spectroscopy to provide key information in fields so apparently distant as the restoration of material heritage or geoplanetary sciences...
Raman spectroscopy is considered among the most technologically advanced instrumental techniques as a result of several recent technological innovations (high sensitivity CCD detectors, fibre optic systems, laser miniaturisation and optical and electronic components) and which have allowed the practical development of new generations of instruments capable of being used in field tests, both on the surface and in remote configuration, or their integration in robotic planetary missions. In this Doctoral Thesis we want to explore the possibilities of this technique as a method of testing and analysis in various fields related to the Geosciences. Therefore, our main objective is to demonstrate the potential of Raman spectroscopy to provide key information in fields so apparently distant as the restoration of material heritage or geoplanetary sciences...
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Tesis inédita de la Universidad Complutense de Madrid, Facultad de Ciencias Geológicas, leída el 11-07-2022