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Polarised neutrons and complex antiferromagnets: an overview

机译:极化中子和复杂的反铁磁体:概述

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Determination of magnetic structure from measurement of the intensities of neutrons (or X-rays) scattered by magnetic Bragg reflections is in some ways a more difficult problem than determination of the crystal structure. This is because the magnetic structure factor is a vector quantity so that directional as well as phase information is lost in measuring just the intensity. In this situation, the vector properties of the neutron's polarisation provide a way of recovering some of this lost information. The changes in direction of the neutron spin which take place on scattering by the fourier components of the magnetic induction in a crystal are highly dependent on their relative orientation. These changes can be measured using a neutron polarimeter which can determine the direction of scattered neutron polarisation for ally chosen incident polarisation direction. This technique has been named spherical polarimetry. Using spherical polarimetry, it has been possible to solve a number of magnetic structure problems which were intractable by other means. The polarimetric data obtained from just a very few Bragg reflections may impose sufficient constraints on the possible magnetic structures to allow a unique model to be established. The technique has proved particularly valuable in the study of non-collinear magnetic structures where it has already shown that certain previously determined structures were incorrect. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 13]
机译:在某些方面,通过测量由布拉格磁反射散射的中子(或X射线)的强度来确定磁性结构比确定晶体结构更困难。这是因为磁性结构因子是矢量,因此在仅测量强度时会丢失方向信息和相位信息。在这种情况下,中子极化的矢量特性提供了一种恢复某些丢失信息的方法。晶体中磁感应的傅立叶分量在散射时发生的中子自旋方向变化高度依赖于它们的相对方向。可以使用中子旋光计测量这些变化,该中子旋光计可以确定所有选择的入射极化方向的散射中子极化方向。这项技术被称为球偏振法。使用球偏振法,可以解决许多其他方法难以解决的磁性结构问题。从非常少的布拉格反射获得的极化数据可能会对可能的磁性结构施加足够的约束,以允许建立唯一的模型。该技术在非共线磁性结构的研究中被证明特别有价值,在该研究中,该技术已经表明某些先前确定的结构是不正确的。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:13]

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