On the role of LET-dependent parameters in the determination of the absorbed dose by in-phantom recombination chambers

Author:

Golnik Natalia1,Maciak Maciej G.1

Affiliation:

1. Institute of Metrology and Biomedical Engineering Warsaw University of Technology Sw. A. Boboli 8, 02-525 Warsaw , Poland

Abstract

Abstract The paper discusses the theoretical background in terms of the use of in-phantom recombination chambers in mixed radiation fields, with special attention paid to the question of how the experimentally determined, linear-energy-transfer-dependent (LET) parameters can be applied with regard to the more accurate determination of the chamber response and absorbed dose in mixed radiation fields. Methods of taking the recombination index of radiation quality (RIQ) measurements and theoretical consideration concerning the determination of the absorbed dose are described. Classical Bragg-Gray and Spencer-Attix cavity theories were analysed and their relationship to in-phantom recombination chambers was specifi ed. Methods concerning the estimation of correction factors with regard to RIQ measurements and their importance are highlighted.

Publisher

Walter de Gruyter GmbH

Subject

Waste Management and Disposal,Condensed Matter Physics,Safety, Risk, Reliability and Quality,Instrumentation,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference39 articles.

1. 1. Zielczyński, M. (1962). Use of columnar recombination for determination of relative biological effi ciency of radiation. Nukleonika, 7, 175-182 (in Russian).

2. 2. Zielczyński, M. (1963). Recombination method for determination of linear energy transfer of mixed radiation. In Symposium on Neutron Detection, Dosimetry, and Standardization, 10-14 December 1962 (pp. 397-404). Vienna, Austria: International Atomic Energy Agency.

3. 3. Sullivan, A. H., & Baarli, J. (1963). An ionization chamber for the estimation of the biological effectiveness of radiation. Geneva, Switzerland: CERN. (Report 63-17).

4. 4. Zielczyński, M., Golnik, N., Makarewicz, M., & Sullivan, A. H. (1981). Defi nition of radiation quality by initial recombination of ions. In 7th Symposium on Microdosimetry, 8-12 September 1980 (pp. 853-862). Oxford, United Kingdom: Harwood Academic Publishers.

5. 5. Zielczyński, M., & Golnik, N. (1994). Recombination index of radiation quality - measuring and applications. Radiat. Prot. Dosim., 52, 419-422.10.1093/oxfordjournals.rpd.a082226

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