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Dosimetry and spectrometry at accelerator based neutron source for boron neutron capture therapy

机译:基于加速器的中子源的剂量学和光谱法用于硼中子俘获治疗

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摘要

An innovative accelerator-based neutron source for boron neutron capture therapy has started operation at the Budker Institute of Nuclear Physics, Novosibirsk. This facility is based on a compact vacuum insulation tandem accelerator designed to produce proton current up to 10 mA. Epithermal neutrons are proposed to be generated by 1.915 MeV protons bombarding a lithium target using ~7Li(p,n)~7Be threshold reaction. In the article, techniques to detect neutron and gamma-rays at the facility are described. Gamma radiation is measured with NaI and BGO gamma-spectrometers. The total yield of neutrons is determined by measuring the 477 keV γ-quanta from beryllium decay. For the rough analysis of the generated neutron spectrum we used bubble detectors. As the epithermal neutrons are of interest for neutron capture therapy the NaI detector is used as activation detector. We plan to use a time-of-flight technique for neutron spectra measurement. To realize this technique a new solution of short time neutron generation is proposed.
机译:一种用于硼中子捕获疗法的基于加速器的创新中子源已在新西伯利亚的Budker核物理研究所开始运行。该设备基于紧凑型真空绝缘串联加速器,旨在产生高达10 mA的质子电流。有人提出,使用〜7Li(p,n)〜7Be阈值反应,通过1.915 MeV质子轰击锂靶,产生超热中子。在这篇文章中,描述了在设施中检测中子和伽马射线的技术。伽马射线用NaI和BGO伽马光谱仪测量。中子的总产量通过测量铍衰变产生的477 keVγ量子来确定。为了对产生的中子光谱进行粗略分析,我们使用了气泡探测器。由于超热中子对于中子俘获治疗非常重要,因此将NaI检测器用作激活检测器。我们计划将飞行时间技术用于中子光谱测量。为了实现该技术,提出了一种短时中子产生的新解决方案。

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