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Determining the Elemental Composition of Antique Coins of Phanagorian Treasure by Neutron Spectroscopy at the Pulsed Neutron Source IREN in FLNP JINR
Physics of Particles and Nuclei Letters Pub Date : 2020-06-22 , DOI: 10.1134/s1547477120030139
P. V. Sedyshev , N. V. Simbirtseva , A. M. Yergashov , S. T. Mazhen , Yu. D. Mareev , V. N. Shvetsov , M. G. Abramzon , I. A. Saprykina

Abstract—Neutron Resonance Capture Analysis (NRCA) is currently being developed in the Frank Laboratory of Neutron Physics (FLNP) for the purpose of determining the element composition of samples. This method is based on registering neutron resonances in radiative capture and measuring the yield of reaction products in these resonances. To test the capabilities of this method, such investigations have been carried out in collaboration with the Institute of Archaeology of the Russian Academy of Sciences at the IREN pulsed neutron source, FLNP, for ancient coins from Phanagorian treasure. A cylindrical multisectional liquid scintillator detector is used to detect γ-quanta.

中文翻译:

在FLNP JINR中通过脉冲中子源IREN的中子光谱法确定Phanagorian宝藏古钱币的元素组成

摘要—中子物理学的弗兰克实验室(FLNP)目前正在开发中子共振捕获分析(NRCA),目的是确定样品的元素组成。该方法基于在辐射捕获中记录中子共振并测量这些共振中反应产物的产率。为了测试这种方法的功能,已经与俄罗斯科学院考古研究所在IREN脉冲中子源FLNP上进行了这种调查,以研究来自Phanagorian宝藏的古钱币。圆柱形多段液体闪烁体检测器用于检测γ量子。
更新日期:2020-06-22
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