Beryllium determination in non-optimal matrices using the $^{9}$\textbf{Be(d,n$\gamma )$}$^{10}$\textbf{B}

G. Perdikakis, A. Spyrou, M. Kokkoris, C. Zarkadas, A. Karydas, S. Harissopulos, S. Kossionides
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Abstract

An alternative method for the detection of beryllium in light element matrices is proposed, implementing the use of a deuteron beam at energies from 1 to 2.1 MeV and the $^{9}$Be(d,n$\gamma )^{10}$B reaction. A HP GE detector of 20{\%} relative efficiency was used to detect the 718 keV gamma ray of $^{10}$B. The minimum detection limits obtained for beryllium, are compared to those taken with other NRA techniques (PIGE, heavy-ion and charged-particle spectroscopy) in complex matrices containing high concentrations of light elements. The absolute $\gamma $-ray yield of the reaction is also compared to absolute $\gamma $-ray yields from literature.
利用$^{9}$\textbf{Be(d,n$\gamma )$}$^{10}$\textbf{B}
提出了一种检测轻元素矩阵中铍的替代方法,即利用能量为1 ~ 2.1 MeV的氘核束和$^{9}$Be(d,n$\gamma) $ {10}$B反应。采用相对效率为20{\%}的HP GE探测器探测$^{10}$B的718 keV伽马射线。在含有高浓度轻元素的复杂基质中,与其他NRA技术(PIGE,重离子和带电粒子光谱)所获得的最低检测限进行了比较。反应的绝对伽马射线产率也与文献中的绝对伽马射线产率进行了比较。
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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