首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Сopper-64 isotope production through the cyclotron proton irradiation of the natural-nickel target
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Сopper-64 isotope production through the cyclotron proton irradiation of the natural-nickel target

机译:Сopper-64同位素通过自然镍靶的回旋加器质子辐射产生

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A design procedure and numerical simulation of a production process for Cu-64 isotope by the 64Ni (p, n)64Cu nuclear reaction have been developed. The required radionuclide applicable in the nuclear medicine is produced through irradiating a cyclotron target of natural nickel with a proton beam. The process conditions were dictated by the capabilities of the cyclotron; an initial kinetic energy of 17 MeV (at a current of 10 μA) was fed into computation. As a result, dependencies of the Cu-64 isotope production on the target thickness and on the irradiation time were obtained. The target depth of proton penetration was investigated, and it was established where the peak radionuclide concentration was produced. An analysis of the obtained data made possible the finding of the optimal thickness of the nickel target being of 0.54 mm.
机译:已经开发了64NI(P,N)64CU核反应的Cu-64同位素的制备方法的设计程序和数值模拟。 通过用质子束照射天然镍的回旋加速器,产生所需的放射性核素。 过程条件被回旋加速器的能力决定; 将初始动能为17mEV(在10μA的电流下)被送入计算。 结果,获得了靶厚度和照射时间对靶厚度和照射时间的Cu-64同位素产生的依赖性。 研究了质子渗透的目标深度,并建立了产生峰放射核素浓度的位置。 对所得数据的分析使得能够找到镍靶为0.54mm的最佳厚度。

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