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Raman distributed temperature measurement at CERN high energy accelerator mixed field radiation test facility (CHARM)

机译:Cern高能量加速器混合场辐射试验设施(魅力)拉曼分布式温度测量

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In this paper we present a validation of distributed Raman temperature sensing (RDTS) at the CERN high energy accelerator mixed field radiation test facility (CHARM), newly developed in order to qualify electronics for the challenging radiation environment of accelerators and connected high energy physics experiments. By investigating the effect of wavelength dependent radiation induced absorption (RIA) on the Raman Stokes and anti-Stokes light components in radiation tolerant Ge-doped multi-mode (MM) graded-index optical fibers, we demonstrate that Raman DTS used in loop configuration is robust to harsh environments in which the fiber is exposed to a mixed radiation field. The temperature profiles measured on commercial Ge-doped optical fibers is fully reliable and therefore, can be used to correct the RIA temperature dependence in distributed radiation sensing systems based on P-doped optical fibers.
机译:在本文中,我们在CERN高能量加速器混合场辐射测试设施(魅力)上呈现了分布式拉曼温度传感(RDT),新开发的,以限定促进者的挑战辐射环境和连接的高能物理实验。通过研究波长依赖性辐射诱导的吸收(RIA)对拉曼斯托克的影响(RIA)和辐射耐受GE-掺杂多模(MM)分级光纤中的抗刺激光分量,我们演示了循环配置中使用的拉曼DTS对纤维暴露于混合辐射场的恶劣环境是鲁棒的。在商业GE掺杂光纤上测量的温度曲线是完全可靠的,因此可用于校正基于P掺杂光纤的分布式辐射传感系统中的RIA温度依赖性。

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