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High-pressure effect on the crystal and magnetic structure of LuMnO3: Correlation between a distortion of the triangular lattice and the symmetry of the magnetic state in hexagonal frustrated manganites

机译:高压对LuMnO3晶体和磁性结构的影响:六角形失硬锰矿中三角形晶格畸变与磁性对称性之间的关系

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摘要

The effect of a high pressure (up to 6 GPa) on the crystal and magnetic structure of the hexagonal manganite LuMnO3 is studied by neutron diffraction in the temperature range 10-295 K. It is found that, as the pressure increases, the ordered magnetic moment of Mn ions at T = 10 K decreases noticeably from 2.48 (0 GPa) to 1.98 mu(B) (6 GPa). This decrease is due to an enhancement of the geometrical frustration effects on the triangular lattice. At the same time, the symmetry of the triangular antiferromagnetic state (the irreducible representation Gamma 2) remains unchanged. A correlation is revealed between the distortion parameter of the triangular lattice formed by Mn ions and the symmetry of the anti ferromagnetic state of hexagonal manganites RMnO3. Based on this correlation, a generalized magnetic phase diagram of these compounds is constructed. The obtained phase diagram provides an explanation for the changes observed in the magnetic state of hexagonal manganites caused by high pressure and chemical substitution.
机译:通过中子衍射在10-295 K的温度范围内研究了高压(高达6 GPa)对六方锰矿LuMnO3的晶体和磁性结构的影响。发现随着压力的增加,有序磁性T = 10 K时,Mn离子的矩从2.48(0 GPa)显着降低到1.98 mu(B)(6 GPa)。这种减少是由于对三角形晶格的几何挫折效果的增强。同时,三角形反铁磁态的对称性(不可约表示Gamma 2)保持不变。揭示了由锰离子形成的三角形晶格的形变参数与六角锰矿RMnO3的反铁磁态对称性之间的相关性。基于这种相关性,可以构建这些化合物的广义磁相图。所获得的相图解释了高压和化学取代引起的六方锰矿磁性状态的变化。

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