首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Fabrication and experimental evaluation of microstructured ~6Li silicate fiber arrays for high spatial resolution neutron imaging
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Fabrication and experimental evaluation of microstructured ~6Li silicate fiber arrays for high spatial resolution neutron imaging

机译:微结构〜6Li硅酸盐纤维阵列用于高空间分辨率中子成像的制备和实验评价

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摘要

This work presents the fabrication and experimental evaluation of instrumentation designed to enable higher spatial resolution neutron radiography for those performing research at neutron scattering facilities. Herein, we describe a proof-of-concept array of microstructured silicate fibers with ~6Li doped cores that shows progress towards a design for μm resolution neutron radiography. The multicore fiber was fabricated by drawing stacked unit elements of Guardian Glass (Nucsafe Inc., Oak Ridge, TN, USA), a ~6Li scintillating core glass, and a silicate cladding glass. These structured fibers function as an array of sub-10-um waveguides for scintillation light. Measurements have shown a significantly increased integrated charge distribution in response to neutrons, and the spatial resolution of the radiographs is described by edge response and line spread functions of 48 ± 4 μm and 59 ± 8 μm, respectively.
机译:这项工作介绍了仪器的制造和实验评估,该仪器旨在为中子散射设施进行研究的人员提供更高空间分辨率的中子射线照相。在这里,我们描述了具有〜6Li掺杂核的微结构化硅酸盐纤维的概念验证阵列,显示了朝着微米分辨率中子射线照相设计的进展。多芯光纤是通过拉伸Guardian玻璃(Nucsafe Inc.,橡树岭,田纳西州,美国),〜6Li闪烁芯玻璃和硅酸盐包层玻璃的堆叠单元元件制成的。这些结构化光纤充当闪烁光的亚10微米以下波导的阵列。测量结果表明,响应中子,积分电荷分布显着增加,并且射线照相的空间分辨率分别由边缘响应和线扩展函数分别为48±4μm和59±8μm来描述。

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