解锁铁磁旋转功能。

IF 2.3 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Junjie Yang, Fei-Ting Huang, Sang-Wook Cheong
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引用次数: 0

摘要

铁旋转(FR)现象——由固有的晶体旋转畸变引起——直到最近才引起了极大的关注,尽管人们早就知道在各种化合物中存在铁旋转畸变。这些现象包括与螺旋自旋顺序和电场诱导的光学活性有关的多铁性。然而,FR和磁有序之间更广泛的关系在很大程度上仍未被探索和理解。本研究深入研究了磁序与FR之间的相互作用,确定了能够承载磁FR的潜在材料,并探索了磁FR与外部刺激之间的相互作用。我们的分析表明,在122个磁点群中,有43个表现出磁性FR。属于这些磁点群的材料有望表现出磁序诱导FR。值得注意的是,宇称/时间逆奇反铁磁序和FR的结合可以导致方向非互易自旋波的出现,如MnTiO3所示。此外,我们的研究发现,当磁性FR物体暴露于外部电场或温度梯度时,新的磁序诱导的可切换手性。总的来说,本研究阐明了FR、磁序和外部扰动之间的复杂关系,揭示了磁性FR材料尚未开发的潜力和功能。 。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unlocking magnetic ferro-rotational functionalities.

Ferro-rotation (FR) phenomena-arising from intrinsic crystallographic rotational distortions-have only recently gained significant attention, despite the long-known presence of FR distortions in various compounds. Such phenomena include multiferroicity linked to helical spin order and electric field-induced optical activity. However, the broader relationship between FR and magnetic ordering remains largely unexplored and poorly understood. This study delves into the interplay between magnetic order and FR identifies potential materials capable of hosting magnetic FR and explores the interaction between magnetic FR and external stimuli. Our analysis reveals that out of the 122 magnetic point groups, 43 of them exhibit magnetic FR. Materials belonging to these magnetic point groups hold promise for demonstrating magnetic order-induced FR. Notably, the combination of parity/time reversal-odd antiferromagnetic order and FR can lead to the emergence of directionally nonreciprocal spin waves, as exemplified in MnTiO3. Moreover, our investigation uncovers novel magnetic order-induced switchable chirality, when magnetic FR objects are exposed to external electric fields or temperature gradients. Overall, this research elucidates the intricate relationship between FR, magnetic order, and external perturbations, revealing the untapped potential and functionalities of magnetic FR materials.

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来源期刊
Journal of Physics: Condensed Matter
Journal of Physics: Condensed Matter 物理-物理:凝聚态物理
CiteScore
5.30
自引率
7.40%
发文量
1288
审稿时长
2.1 months
期刊介绍: Journal of Physics: Condensed Matter covers the whole of condensed matter physics including soft condensed matter and nanostructures. Papers may report experimental, theoretical and simulation studies. Note that papers must contain fundamental condensed matter science: papers reporting methods of materials preparation or properties of materials without novel condensed matter content will not be accepted.
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