Published December 2004 | Version v1
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Ion induced scintillation in organic solids: development of an average track model,degradation of the scintillation intensity and dosimetric applications

Description

This work deals with a specific aspect of the ion-matter interaction: the scintillation induced by ions in organic materials. In the first chapter we tackle the issue in a theoretical way by proposing a method to compute the radial doses within the framework of the mean track model. We have developed a model based on the Lewis transport equation and on the Spencer distribution of the loss energy in order to take into account the transport of secondary electrons in a more realistic way. In the second chapter we study the physical mechanisms that trigger ion-induced scintillation. Ion-induced scintillation is featured by the dependence in charge number of the intensity of scintillation for ions with same energy loss and by the saturation of the scintillation efficiency for ions with high stopping-power. We have applied our model of radial doses to ion-induced scintillation. In the third chapter we study the gradual degradation of the scintillation intensity and ion-induced chemical damages. In the last chapter we propose a prototype of dosimeters based on the combination of scintillators and optical fibers that allows the real-time measurement of the dose delivered by a carbon ion beam in therapeutical use conditions. This dosimeter gives the relationship between the dose and the scintillation intensity but its accuracy is not yet sufficient for uses in radiotherapy. (A.C.)

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Additional details

Additional titles

Original title (French)
Scintillation iono-induite dans les solides organiques: elaboration d'un modele de trace moyenne, degradation de l'intensite de scintillation et application en dosimetrie

Publishing Information

Imprint Pagination
170 p.
Report number
FRNC-TH--7935

Optional Information

Notes
188 refs.; Also available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org//inis/Contacts/index.htm. Also available from Bibliotheque Blaise Pascal, 2 rue Blaise Pascal, BP 1037/F, 67070 - Strasbourg CEDEX (France)