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Irradiation-resistant magnetic field microsensors

机译:耐辐射磁场微传感器

摘要

A technology developed for creating radiationresistant magnetic field sensors based on semiconductor binary compounds of III-V group (InSb, InAs, GaAs) andtheir solid solutions (InXGa1-XAs, InAsXIn1-X) is presented. Studies have confirmed such sensors’ operability in neutron fluxes up to high fluences. This has made possible their use in magnetic measuring instrumentation for magnetic field diagnostics in thermonuclear reactors. The instrumentation comprises a 3D probe with Hall sensors and electronics characterized by the function of in-situ self-calibration, which makes available periodic calibration of sensors without their reinstallation, leading to high measurement accuracy. The magnetic measuring instrumentation developed by the team has been applied in European reactors TORE SUPRA(France) and JET (UK), and is aimed at solving tasks at a new charged particle accelerator – collider NICA (Russia).
机译:提出了一种基于III-V族半导体二元化合物(InSb,InAs,GaAs)及其固溶体(InXGa1-XAs,InAsXIn1-X)创建耐辐射磁场传感器的技术。研究证实了这种传感器在中子通量到高通量中的可操作性。这使得它们可以在用于热核反应堆中磁场诊断的磁性测量仪器中使用。该仪器包括一个带有霍尔传感器和电子器件的3D探头,其特征在于就地自校准功能,无需重新安装就可以对传感器进行定期校准,从而提高了测量精度。该团队开发的磁性测量仪器已应用于欧洲的TORE SUPRA(法国)和JET(英国)反应堆,旨在解决新型带电粒子加速器-对撞机NICA(俄罗斯)的任务。

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