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Measurement of the proton beam energy of a medical cyclotron based on Rutherford Back-scattering Analysis

机译:基于卢瑟福反向散射分析的医用回旋加速器质子束能量测量

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摘要

For the first time the Rutherford Back-Scattering Spectroscopy (RBS) technique has been successfully exploited for the measurement of the energy of a proton beam accelerated by the IBA Cyclone 18/18 medical cyclotron in operation at the Bern University Hospital. This accelerator, routinely used for radioisotope production for Positron Emission Tomography (PET) imaging is equipped with an external beam line devoted to research activities in several fields such as detector physics, medical applications of particle physics, accelerator physics. Recently a widespread request has raised for the availability of well characterized proton and neutron beams, particularly for radiation hardness studies and the development of new neutron detectors. A feasibility study for a future upgrade of the Bern cyclotron towards a neutron facility was started, which requires a complete and precise characterization of the proton beam. Along this line, the measurement of fundamental parameters of the primary proton beam, such as the maximum proton energy and its spread have been performed by means of the RBS technique with two different targets, namely gold and graphite foils.
机译:卢瑟福背散射光谱(RBS)技术首次成功地用于测量由伯尔尼大学医院运行的IBA Cyclone 18/18医用回旋加速器加速的质子束的能量。该加速器通常用于正电子发射断层扫描(PET)成像的放射性同位素生产,配备有外部光束线,专门用于多个领域的研究活动,例如探测器物理,粒子物理的医学应用,加速器物理。最近,人们提出了对具有良好特征的质子束和中子束的需求,特别是对于辐射硬度研究和新中子探测器的开发。开始进行伯尔尼回旋加速器升级为中子设施的可行性研究,这需要对质子束进行完整而精确的表征。沿着这条线,主要的质子束基本参数(例如最大质子能量及其散布)的测量已通过RBS技术针对两个不同的目标(即金箔和石墨箔)进行。

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