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AbstractAbstract
[en] A new multicellular geometry for proportional counter has been developed. It is made of several drift regions which are some holes drilled in the cathode in front of anodes wires. The present work is made of 3 parts: 1) A theoretical evaluation of the multicellular counter characteristics: the sensitivity increases by a factor 15 vs the Tinelli Merlin-Gerin counter; the chord length distribution study shows the possibility to use a Dirac function for the dosimetry calculations; a tissue equivalent gas mixture based on argon and propane is designed. 2) The production of a monocellular prototype made of a hole and a needle shaped anode. 3) An experimental study of the prototype electrical characteristics and a computation of the electrical field in the counter. The focalization and the electron drift into the hole, the proportional operating mode are shown. Irradiations in front of photon and neutron sources verify these results
Original Title
Contribution a la realisation d'un compteur proportionnel a derive equivalent au tissu destine a la dosimetrie individuelle en radioprotection
Secondary Subject
Source
Apr 1992; 181 p; Memoire (Ing. CNAM).
Record Type
Report
Literature Type
Thesis/Dissertation
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