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APS -APS March Meeting 2017 - Event - Single crystal x-ray structure studies of multiferroic CuBr2 near its N'eel transition

机译:APS -APS 2017年3月会议-活动-N'eel转变附近的多铁性CuBr2的单晶X射线结构研究

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CuCl$_{2}$ was the first reported multiferroic in the halogen familyfootnote{S. Seki et al.,extbf{Phys. Rev. B} 82, 064424 (2010)}. CuBr$_{2}$ was later reported to be a multiferroic in the same family, but with a high transition temperature, T$_{N}$ = 73.5Kfootnote{L. Zhao et al.,extbf{Adv. Mat.} 24, 2469-2473 (2012)}. Although it has been reported to have spontaneous spin-driven ferroelectricity according to its polarization data, the reported temperature dependence of the dielectric constant lacks a sharp peak when crossing T$_{N}$, as is observed in CuCl$_{2}$. In order to probe the ionic displacements that are the origin of ferroelectricity in these materials, we performed hard X-ray diffraction studies of CuBr$_{2}$ as a function of temperature through T$_{N}$. Our data reveal no change in the lattice periodicity, however a change in the symmetry of the unit cell is clearly observed in the variation of the Bragg peak intensities with temperature. We will discuss the implications of these structure changes for the mechanism behind the magnetoelectric properties of CuBr$_{2}$.
机译:CuCl $ _ {2} $是卤素族脚注{S中第一个报道的多铁性化合物。 Seki等,extbf {Phys。修订版B} 82,064424(2010)}。后来据报道,CuBr $ _ {2} $是同一家族中的多铁性元素,但具有较高的转变温度,T $ _ {N} $ = 73.5Kfootnote {L。 Zhao等,extbf {Adv。 Mat。} 24,2469-2473(2012)}。尽管据其极化数据据报道其具有自旋自旋驱动铁电性,但如在CuCl $ _ {2}中观察到的,所报道的介电常数的温度依赖性在穿越T $ _ {N} $时没有一个尖锐的峰。 $。为了探查这些材料中作为铁电起源的离子位移,我们通过T $ _ {N} $对CuBr $ _ {2} $作为温度的函数进行了硬X射线衍射研究。我们的数据没有显示晶格周期性的变化,但是在布拉格峰强度随温度的变化中可以清楚地观察到晶胞对称性的变化。我们将讨论这些结构变化对CuBr $ _ {2} $的磁电特性背后的机理的影响。

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