Demonstration of Neutron Phase Imaging Based on Talbot–Lau Interferometer at Compact Neutron Source RANS

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
H. Takano, Yanlin Wu, T. Samoto, A. Taketani, Takaoki Takanashi, C. Iwamoto, Y. Otake, A. Momose
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引用次数: 0

Abstract

Neutron imaging based on a compact Talbot–Lau interferometer was demonstrated using the RIKEN accelerator-driven compact neutron source (RANS). A compact Talbot–Lau interferometer consisting of gadolinium absorption gratings and a silicon phase grating was constructed and connected to the RANS. Because of pulsed thermal neutrons from the RANS and a position-sensitive detector equipped with time-of-flight (TOF) analysis, moiré interference patterns generated using the interferometer were extracted at a TOF range around the design wavelength (2.37 Å) optimal for the interferometer. Differential phase and scattering images of the metal rod samples were obtained through phase-stepping measurements with the interferometer. This demonstrates the feasibility of neutron phase imaging using a compact neutron facility and the potential for flexible and unique applications for nondestructive evaluation.
基于Talbot–Lau干涉仪的紧凑型中子源RANS中子相位成像演示
利用RIKEN加速器驱动的紧凑型中子源(RANS)演示了基于紧凑型塔尔博特-劳干涉仪的中子成像。构造了一个由钆吸收光栅和硅相位光栅组成的紧凑型塔尔博特-劳干涉仪,并将其连接到RANS上。由于来自RANS的脉冲热中子和配备飞行时间(TOF)分析的位置敏感探测器,使用干涉仪产生的moir干涉图在干涉仪的最佳设计波长(2.37 Å)附近的TOF范围内提取。利用干涉仪进行步进相位测量,获得了金属棒样品的差相和散射图像。这证明了使用紧凑的中子设备进行中子相位成像的可行性,以及在无损评估方面灵活而独特的应用潜力。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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