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Timepix and FitPix detection system for RBS/C materials analysis

This thesis reports the implementation of a Timepix position sensitive detector in a ion beam facility with a 0.5 mm collimated beam of 2MeV 1H$^{+}$ and 4He$^{+}$ for use in Rutherford Back-scattering Spectrometry channeling (RBS/C). A complete description is given of the methodology used for energ...

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Autor principal: David-Bosne, Eric
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1640586
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author David-Bosne, Eric
author_facet David-Bosne, Eric
author_sort David-Bosne, Eric
collection CERN
description This thesis reports the implementation of a Timepix position sensitive detector in a ion beam facility with a 0.5 mm collimated beam of 2MeV 1H$^{+}$ and 4He$^{+}$ for use in Rutherford Back-scattering Spectrometry channeling (RBS/C). A complete description is given of the methodology used for energy calibration, RBS data analysis and simulation with the FLUX Monte Carlo simulation program. Energy calibration was performed with internal test pulses and resulting resolution and accuracy were verified in two ways. The first time using a triple alpha source with the isotopes $^{239}$Pu, $^{241}$Am and $^{244}$Cm and secondly using a RBS spectrum of a thin film sample of Au/SiO$_{2}$/C. Setup characterization for channeling measurements was performed using single crystals of Si, 6H$^{-}$SiC and SrTiO$_{3}$. An energy resolution of 47.2 keV at 1862 keV for He$^{+}$ and an angular resolution of 0.11 (standard deviation) was achieved. Count rates as high as 2kHz were achieved with a frame rate of 15 frames/s. Higher count rates are possible, however, at the cost of an increase pile-up or increase in the detector dead-time. No radiation damage effect on the energy resolution was perceivable after a fluence of $7.5 \times 10^{7}$ particles/cm$^{2}$.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-16405862019-09-30T06:29:59Zhttp://cds.cern.ch/record/1640586engDavid-Bosne, EricTimepix and FitPix detection system for RBS/C materials analysisCondensed MatterDetectors and Experimental TechniquesThis thesis reports the implementation of a Timepix position sensitive detector in a ion beam facility with a 0.5 mm collimated beam of 2MeV 1H$^{+}$ and 4He$^{+}$ for use in Rutherford Back-scattering Spectrometry channeling (RBS/C). A complete description is given of the methodology used for energy calibration, RBS data analysis and simulation with the FLUX Monte Carlo simulation program. Energy calibration was performed with internal test pulses and resulting resolution and accuracy were verified in two ways. The first time using a triple alpha source with the isotopes $^{239}$Pu, $^{241}$Am and $^{244}$Cm and secondly using a RBS spectrum of a thin film sample of Au/SiO$_{2}$/C. Setup characterization for channeling measurements was performed using single crystals of Si, 6H$^{-}$SiC and SrTiO$_{3}$. An energy resolution of 47.2 keV at 1862 keV for He$^{+}$ and an angular resolution of 0.11 (standard deviation) was achieved. Count rates as high as 2kHz were achieved with a frame rate of 15 frames/s. Higher count rates are possible, however, at the cost of an increase pile-up or increase in the detector dead-time. No radiation damage effect on the energy resolution was perceivable after a fluence of $7.5 \times 10^{7}$ particles/cm$^{2}$.CERN-THESIS-2013-239oai:cds.cern.ch:16405862014-01-02T11:42:26Z
spellingShingle Condensed Matter
Detectors and Experimental Techniques
David-Bosne, Eric
Timepix and FitPix detection system for RBS/C materials analysis
title Timepix and FitPix detection system for RBS/C materials analysis
title_full Timepix and FitPix detection system for RBS/C materials analysis
title_fullStr Timepix and FitPix detection system for RBS/C materials analysis
title_full_unstemmed Timepix and FitPix detection system for RBS/C materials analysis
title_short Timepix and FitPix detection system for RBS/C materials analysis
title_sort timepix and fitpix detection system for rbs/c materials analysis
topic Condensed Matter
Detectors and Experimental Techniques
url http://cds.cern.ch/record/1640586
work_keys_str_mv AT davidbosneeric timepixandfitpixdetectionsystemforrbscmaterialsanalysis