地质样品伽马活化分析与仪器中子活化分析的比较

IF 0.5 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY Journal of Contemporary Physics (Armenian Academy of Sciences) Pub Date : 2024-03-07 DOI:10.1134/s1068337223040023
A. Y. Aleksanyan, S. M. Amirkhanyan, A. G. Aperyan, H. R. Gulkanyan, T. V. Kotanjyan, M. A. Levonyan, V. S. Pogosov, L. A. Poghosyan, A. S. Saakov, A. A. Shahinyan
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引用次数: 0

摘要

摘要在亚美尼亚首次使用轫致辐射光子束在 A. Alikhanyan 国家科学实验室(AANL) 的线性电子加速器上对黑曜石地质样品进行了伽马活化分析。结果表明,黑曜石样品的化学成分分析结果与 Curt-Engelhom 考古中心(德国曼海姆)在美因茨大学核化学研究所的专用核反应堆 TRIGA 中用中子辐照后对同一样品进行的仪器中子活化分析(INAA)结果相当。研究还表明,伽马活化分析可以确定一些无法或很难使用 INAA 测定的元素的含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comparison of Gamma Activation Analysis and Instrumental Neutron Activation Analysis of Geological Samples

Abstract

For the first time in Armenia, gamma activation analysis of geological samples of obsidian was carried out using beams of bremsstrahlung photons at the linear electron accelerator of the A. Alikhanyan National Scientific Laboratory (AANL). It is shown that the results of the chemical composition of the obsidian sample are comparable with the results of instrumental neutron activation analysis (INAA) of the same sample, carried out at the Curt-Engelhom-Center for Archaeometry (Mannheim, Germany), after irradiation with neutrons in a specialized nuclear reactor TRIGA at the Institute of Nuclear Chemistry of the Mainz University. It is also shown that gamma activation analysis makes it possible to determine the content of a number of elements for which the use of INAA is impossible or difficult.

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来源期刊
CiteScore
1.00
自引率
66.70%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Journal of Contemporary Physics (Armenian Academy of Sciences) is a journal that covers all fields of modern physics. It publishes significant contributions in such areas of theoretical and applied science as interaction of elementary particles at superhigh energies, elementary particle physics, charged particle interactions with matter, physics of semiconductors and semiconductor devices, physics of condensed matter, radiophysics and radioelectronics, optics and quantum electronics, quantum size effects, nanophysics, sensorics, and superconductivity.
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