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Fiber-optic Multipoint Radiation Sensing System using Waveguide Scintillators

机译:使用波导闪烁器的光纤多点辐射传感系统

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Novel fiber-optic radiation sensors and a multipoint measurement method that takes advantage of them have been developed. The new sensor design, which we call a "waveguide scintillator", consists of a scintillating material and a wavelength-shifting fiber (WLSF). The WLSF is embedded in the scintillating material, and each end is connected to a transparent optical fiber. These waveguide scintillators can be connected in series along an optical fiber loop to form a radiation monitoring system, and each end of the fiber loop is terminated with a photodetector. This new radiation monitoring arrangement dispenses with the need for electronic apparatus at each measuring point and consequently improves resistance to noise. Furthermore, it offers the advantages of multipoint monitoring-meaning that radiation intensity can be measured at multiple sensors--using only two photodetectors. We have examined the light output characteristics and time resolution of a prototype arrangement of these new waveguide scintillators, thus confirming the feasibility of multipoint measurements using a system of multiple waveguide scintillators connected in series in an optical fiber loop.
机译:已经开发了新颖的光纤辐射传感器和利用它们的多点测量方法。我们将这种新的传感器设计称为“波导闪烁器”,它由闪烁材料和波长转换光纤(WLSF)组成。 WLSF嵌入在闪烁材料中,并且每端都连接到透明光纤。这些波导闪烁体可以沿着光纤环路串联连接以形成辐射监控系统,并且光纤环路的每一端都以光电探测器端接。这种新的辐射监测装置省去了在每个测量点上对电子设备的需求,因此提高了抗噪声能力。此外,它具有多点监控的优势-意味着可以使用多个光电探测器在多个传感器上测量辐射强度。我们已经检查了这些新型波导闪烁器的原型装置的光输出特性和时间分辨率,从而证实了使用在光纤环路中串联连接的多个波导闪烁器系统进行多点测量的可行性。

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