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Angular alignment and fidelity of neutron phase-gratings for improved interferometer fringe visibility

机译:中子相位光栅的角度对准和保真度,以改善干涉仪条纹的可见性

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The recent development of phase-grating moiré neutron interferometry promises a wide range of impactful experiments from dark-field imaging of material microstructure to precise measurements of fundamental constants. However, the contrast of 3% obtained using this moiré interferometer was well below the theoretical prediction of 30% using ideal gratings. It is suspected that non-ideal aspects of the phase-gratings was a leading contributor to this deficiency and that phase-gratings needed to be quantitatively assessed and optimized. Here we characterize neutron diffraction from phase-gratings using Bragg diffraction crystals to determine the optimal phase-grating orientations. We show well-defined diffraction peaks and explore perturbations to the diffraction peaks and the effects on interferometer contrast as a function of grating alignment. This technique promises to improve the contrast of the grating interferometers by providing in-situ aides to grating alignment.
机译:相栅云纹中子干涉术的最新发展有望进行广泛的有影响的实验,从材料显微结构的暗场成像到基本常数的精确测量。但是,使用该莫尔干涉仪获得的3%的对比度远低于使用理想光栅获得的30%的理论预测。怀疑相位光栅的非理想方面是造成这种缺陷的主要原因,并且需要对相位光栅进行定量评估和优化。在这里,我们使用布拉格衍射晶体从相位光栅表征中子衍射,以确定最佳的相位光栅取向。我们显示了定义明确的衍射峰,并探讨了衍射峰的扰动以及对干涉仪对比度的影响,这些影响是光栅对准的函数。该技术有望通过为光栅对准提供现场辅助来改善光栅干涉仪的对比度。

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