首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >High-power electron beam tests of a liquid-lithium target and characterization study of ~7Li(p,n) near-threshold neutrons for accelerator-based boron neutron capture therapy
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High-power electron beam tests of a liquid-lithium target and characterization study of ~7Li(p,n) near-threshold neutrons for accelerator-based boron neutron capture therapy

机译:液锂靶的大功率电子束测试和〜7Li(p,n)近阈中子的表征研究,用于基于加速器的硼中子俘获治疗

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A compact Liquid-Lithium Target (LiLiT) was built and tested with a high-power electron gun at Soreq Nuclear Research Center (SNRC). The target is intended to demonstrate liquid-lithium target capabilities to constitute an accelerator-based intense neutron source for Boron Neutron Capture Therapy (BNCT) in hospitals. The lithium target will produce neutrons through the ~7Li(p,n)~7Be reaction and it will overcome the major problem of removing the thermal power > 5 kW generated by high-intensity proton beams, necessary for sufficient therapeutic neutron flux. In preliminary experiments liquid lithium was flown through the target loop and generated a stable jet on the concave supporting wall. Electron beam irradiation demonstrated that the liquid-lithium target can dissipate electron power densities of more than 4 kW/cm2 and volumetric power density around 2 MW/cm3 at a lithium flow of ~4 m/s, while maintaining stable temperature and vacuum conditions. These power densities correspond to a narrow (o-=~2mm) 1.91 MeV, 3 mA proton beam. A high-intensity proton beam irradiation (1.91-2.5 MeV, 2 mA) is being commissioned at the SARAF (Soreq Applied Research Accelerator Facility) superconducting linear accelerator. In order to determine the conditions of LiLiT proton irradiation for BNCT and to tailor the neutron energy spectrum, a characterization of near threshold (~1.91 MeV) 7Li(p,n) neutrons is in progress based on Monte-Carlo (MCNP and Geant4) simulation and on low-intensity experiments with solid LiF targets. In-phantom dosimetry measurements are performed using special designed dosimeters based on CR-39 track detectors.
机译:在Soreq核研究中心(SNRC)上制造了紧凑的液锂靶(LiLiT)并使用大功率电子枪进行了测试。该靶标旨在证明液锂靶标能够构成医院中用于硼中子俘获疗法(BNCT)的基于加速器的强中子源。锂靶将通过〜7Li(p,n)〜7Be反应产生中子,它将克服去除高强度质子束产生的大于5 kW的热功率这一主要问题,这对于足够的治疗中子通量是必不可少的。在初步实验中,液态锂流过目标回路并在凹形支撑壁上产生稳定的射流。电子束辐照表明,液锂靶能够在锂流为〜4 m / s的情况下耗散超过4 kW / cm2的电子功率密度和2 MW / cm3左右​​的体积功率密度,同时保持稳定的温度和真空条件。这些功率密度对应于一个狭窄的(o- =〜2mm)1.91 MeV,3 mA质子束。 SARAF(Soreq Applied Research Accelerator Facility)超导线性加速器正在调试高强度质子束辐照(1.91-2.5 MeV,2 mA)。为了确定BNCT的LiLiT质子辐照条件并调整中子能谱,正在基于蒙特卡罗(MCNP和Geant4)进行接近阈值(〜1.91 MeV)7Li(p,n)中子的表征。固体LiF目标的低强度实验的模拟和实验。幻像剂量测定是使用基于CR-39轨道探测器的特殊设计的剂量计进行的。

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