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首页> 外文期刊>Journal of Applied Crystallography >Time-of-flight studies of multiple Bragg reflections in cylindrically bent perfect crystals
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Time-of-flight studies of multiple Bragg reflections in cylindrically bent perfect crystals

机译:圆柱弯曲的完美晶体中多次布拉格反射的飞行时间研究

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Multiple Bragg reflections (MBRs) realized in a bent perfect crystal (BPC) slab by sets of different lattice planes behave differently from the case of perfect nondeformed or mosaic crystals. Because of elastic bending (homogeneous deformation), individual sets of lattice planes are mutually in dispersive diffraction geometry and the kinematical approach can be applied on this MBR process. The elastic deformation produced by the cylindrical bending can enormously strengthen the MBR effects, which can then be investigated even at small neutron sources. By using neutron diffraction and the time-of-flight method, carried out at the 45 MeV linac-based pulsed cold neutron source at Hokkaido University, it has been demonstrated that when setting the BPC slabs in the symmetric transmission geometry many strong MBRs accompanying forbidden Si(222) or Si(002) reflections can be observed. The advantage of the time-of-flight method consists in the fact that it is possible to observe not only primary MBRs related to the basic forbidden reflections but also their higher orders, which could be easily separated in the time-of-flight spectra.
机译:在弯曲的完美晶体(BPC)平板中,通过不同晶格平面的集合实现的多次布拉格反射(MBR)的行为与完全未变形或镶嵌晶体的情况不同。由于弹性弯曲(均匀变形),各组晶格面相互之间处于弥散衍射几何形状,因此可以将运动学方法应用于此MBR过程。圆柱弯曲产生的弹性变形可以极大地增强MBR效应,然后即使在较小的中子源中也可以对其进行研究。通过使用中子衍射和飞行时间方法,在北海道大学基于45 MeV直线加速器的脉冲冷中子源进行的实验表明,当将BPC平板设置为对称传输几何形状时,许多强MBR会被禁止可以观察到Si(222)或Si(002)反射。飞行时间方法的优点在于,不仅可以观察到与基本禁止反射有关的主MBR,而且可以观察到它们的较高阶数,它们可以在飞行时间谱中轻松分离。

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