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Gamma-Ray Absorption Measurements

Stirling A. Colgate

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Abstract

Gamma-ray absorption measurements have been made using a NaI energy selective scintillation counter with radioactive source gamma-rays of 0.411, 0.664, 1.33, and 2.62 Mev energy. A range of absorbers from hydrogen to uranium was used. The final absorption coefficient was determined to \ifmmode\pm\else\textpm\fi{}0.2 percent rootmean-square statistical accuracy. Additional absorption measurements were made with nuclear reaction gamma-rays at the energies 4.47, 6.13, and 17.6 Mev with the same absorbers. A statistical accuracy of \ifmmode\pm\else\textpm\fi{}2 percent was attained. A comparison of theory to experiment is presented and no radical differences are observed.

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What this paper is about

Gamma-ray absorption measurements have been made using a NaI energy selective scintillation counter with radioactive source gamma-rays of 0.411, 0.664, 1.33, and 2.62 Mev energy. A range of absorbers from hydrogen to uranium was used. The final absorption coefficient was determined to \ifmmode\pm\else\textpm\fi{}0.2 percent rootmean-square statistical accuracy. Additional absorption measurements were made with nuclear reaction gamma-rays at the energies 4.47, 6.13, and 17.6 Mev with the same absorbers. A statistical accuracy of \ifmmode\pm\else\textpm\fi{}2 percent was attained. A comparison of theory to experiment is presented and no radical differences are observed.

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Available abstract

Gamma-ray absorption measurements have been made using a NaI energy selective scintillation counter with radioactive source gamma-rays of 0.411, 0.664, 1.33, and 2.62 Mev energy. A range of absorbers from hydrogen to uranium was used. The final absorption coefficient was determined to \ifmmode\pm\else\textpm\fi{}0.2 percent rootmean-square statistical accuracy. Additional absorption measurements were made with nuclear reaction gamma-rays at the energies 4.47, 6.13, and 17.6 Mev with the same absorbers. A statistical accuracy of \ifmmode\pm\else\textpm\fi{}2 percent was attained. A comparison of theory to experiment is presented and no radical differences are observed.

Key concepts: Gamma ray, Absorption (acoustics), Physics, Scintillation counter, Range (aeronautics), Nuclear physics, Scintillation, Uranium

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