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Spherical neutron polarimetry under high pressure for a multiferroic delafossite ferrite

机译:多铁性铁矾铁氧体的高压球形中子极化法

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摘要

The analysis of three-dimensional neutron spin polarization vectors, using a technique referred to as spherical neutron polarimetry (SNP), is a very powerful means of determining complex magnetic structures in magnetic materials. However, the requirement to maintain neutrons in a highly polarized state has made it difficult to use this technique in conjunction with extreme experimental conditions. We have developed a high pressure cell made completely of nonmagnetic materials and having no effect on neutron polarizations. Herein, we report the first SNP analyses under high pressure up to 4.0 GPa in the magnetoelectric multiferroic delafossite CuFeO2. This study also determined the complex spiral magnetic structures in these pressure-induced phases, by measuring the full neutron polarization matrix. The results presented herein demonstrate that the SNP measurements are feasible under high pressure conditions, and that this method is a useful approach to study pressure-induced physical phenomena.
机译:使用称为球中子极化法(SNP)的技术对三维中子自旋极化矢量进行分析,是确定磁性材料中复杂磁性结构的一种非常有效的方法。但是,将中子保持在高极化状态的要求使得很难将这种技术与极端的实验条件结合使用。我们已经开发出一种完全由非磁性材料制成且对中子极化没有影响的高压电池。在此,我们报道了在磁电多铁三水铁铜矿CuFeO2中在高达4.0 GPa的高压下进行的首次SNP分析。这项研究还通过测量完整的中子极化矩阵,确定了在这些压力感应相中的复杂螺旋磁结构。本文介绍的结果表明,SNP测量在高压条件下是可行的,并且该方法是研究压力引起的物理现象的有用方法。

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