A numerical simulation method for calculation of linear attenuation coefficients of unidentified sample materials in routine gamma ray spectrometry

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Abstract

When using gamma ray spectrometry for radio activity analysis of environmental samples (such as soil, sediment or ash of a living organ ism), relevant linear attenuation coefficients should be known – in order to calculate self-absorption in the sample bulk. This parameter is additionally important since the unidentified samples are normally different in composition and density from the reference ones (the latter being e. g. liquid sources, commonly used for detection efficiency calibration in radioactivity monitoring). This work aims at introducing a numerical simulation method for calculation of linear attenuation coefficients without the use of a collimator. The method is primarily based on calculations of the effective solid angles – compound parameters accounting for the emission and detection probabilities, as well as for the source-to-detector geometrical con figuration. The efficiency transfer principle and aver - age path lengths through the samples them selves are employed, too. The results obtained are compared with those from the NIST-XCOM data base; close agreement confirms the validity of the numerical simulation method approach.

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APA

Badawi, M. S. (2015). A numerical simulation method for calculation of linear attenuation coefficients of unidentified sample materials in routine gamma ray spectrometry. Nuclear Technology and Radiation Protection, 30(4), 249–259. https://doi.org/10.2298/NTRP1504249B

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