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Demonstration of Focusing Wolter Mirrors for Neutron Phase and Magnetic Imaging

机译:中子相和磁成像聚焦沃尔特镜的演示

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Image-forming focusing mirrors were employed to demonstrate their applicability to two different modalities of neutron imaging, phase imaging with a far-field interferometer, and magnetic-field imaging through the manipulation of the neutron beam polarization. For the magnetic imaging, the rotation of the neutron polarization in the magnetic field was measured by placing a solenoid at the focus of the mirrors. The beam was polarized upstream of the solenoid, while the spin analyzer was situated between the solenoid and the mirrors. Such a polarized neutron microscope provides a path toward considerably improved spatial resolution in neutron imaging of magnetic materials. For the phase imaging, we show that the focusing mirrors preserve the beam coherence and the path-length differences that give rise to the far-field moiré pattern. We demonstrated that the visibility of the moiré pattern is modified by small angle scattering from a highly porous foam. This experiment demonstrates the feasibility of using Wolter optics to significantly improve the spatial resolution of the far-field interferometer.
机译:成像聚焦镜用于证明其适用于两种不同形式的中子成像,具有远场干涉仪的相位成像和通过操纵中子束极化的磁场成像。对于磁成像,通过将螺线管放在反射镜的焦点处来测量磁场中中子极化的旋转。光束在螺线管上游被极化,而自旋分析仪位于螺线管和反射镜之间。这种极化中子显微镜为磁性材料的中子成像提供了一条显着提高空间分辨率的途径。对于相位成像,我们表明聚焦镜保留了光束相干性和光程差,从而产生了远场莫尔条纹。我们证明了莫尔图案的可见度是由高度多孔泡沫的小角度散射所改变的。该实验证明了使用沃尔特光学技术显着提高远场干涉仪的空间分辨率的可行性。

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