首页> 外文期刊>Journal of Physics. Condensed Matter >The complex non-collinear magnetic orderings in Ba2YOsO6: a new approach to tuning spin-lattice interactions and controlling magnetic orderings in frustrated complex oxides
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The complex non-collinear magnetic orderings in Ba2YOsO6: a new approach to tuning spin-lattice interactions and controlling magnetic orderings in frustrated complex oxides

机译:Ba2yoso6中的复杂非共线磁性排序:一种调整旋转晶格相互作用的新方法,并控制令人沮丧的复杂氧化物中的磁性排序

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摘要

Frustrated magnets are one class of fascinating materials that host many intriguing phases such as spin ice, spin liquid and complex long-range magnetic orderings at low temperatures. In this work we use first-principles calculations to find that in a wide range of magnetically frustrated oxides, at zero temperature a number of non-collinear magnetic orderings are more stable than the type-I collinear ordering that is observed at finite temperatures. The emergence of non-collinear orderings in those complex oxides is due to higher-order exchange interactions that originate from second-row and third-row transition metal elements. This implies a collinear-to-non-collinear spin transition at sufficiently low temperatures in those frustrated complex oxides. Furthermore, we find that in a particular oxide Ba2YOsO6, experimentally feasible uniaxial strain can tune the material between two different non-collinear magnetic orderings. Our work predicts new non-collinear magnetic orderings in frustrated complex oxides at very low temperatures and provides a mechanical route to tuning complex non-collinear magnetic orderings in those materials.
机译:令人沮丧的磁铁是一类迷人的材料,其在低温下占旋转冰,旋转液体和复合远程磁性排序的许多有趣的阶段。在这项工作中,我们使用第一原理计算来发现,在零温度下,在零温度下,多个非共线磁性排序比在有限温度下观察到的I型相连的排序更稳定。这些复合氧化物中非共线排序的出现是由于源自二排和第三行过渡金属元件的高阶交换相互作用。这意味着在令人沮丧的复合氧化物中的足够低温下的共线对非共线旋转过渡。此外,我们发现,在特定的氧化物Ba2yoso6中,实验可行的单轴应变可以调节两种不同的非共线磁性排序之间的材料。我们的工作在非常低温下预测了令人沮丧的复杂氧化物中的新的非共线磁性排序,并提供了在这些材料中调整复杂的非共线磁性排序的机械途径。

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