Das Sachchidanand, Suri Dhavala, Soori Abhiram
School of Physics, University of Hyderabad, Prof. C. R. Rao Road, Gachibowli, Hyderabad 500046, India.
Department of Physics, Technical University of Munich, Garching 85748, Germany.
J Phys Condens Matter. 2023 Aug 2;35(43). doi: 10.1088/1361-648X/acea12.
Altermagnet (AM) is a novel time reversal symmetry broken magnetic phase with-wave order which has been experimentally realized recently. We discuss theoretical models of AM based systems on lattice and in continuum. We show equivalence between the lattice and continuum models by mapping the respective parameters. We study (i) AM-normal metal and (ii) AM-ferromagnet (FM) junctions, with the aim to quantify transport properties such as conductivity and magnetoresistance. We find that a spin current accompanies charge current when a bias is applied. The magnetoresistance of AM-FM junction switches sign when AM is rotated by 90-a feature unique to the altermagnetic phase.
交变磁体(AM)是一种具有波序的新型时间反演对称性破缺磁相,最近已通过实验实现。我们讨论了基于晶格和连续介质的AM系统的理论模型。通过映射各自的参数,我们展示了晶格模型和连续介质模型之间的等效性。我们研究了(i)AM-正常金属和(ii)AM-铁磁体(FM)结,旨在量化诸如电导率和磁阻等输运性质。我们发现,施加偏压时,自旋电流伴随着电荷电流。当AM旋转90°时,AM-FM结的磁阻会改变符号——这是交变磁相独有的特征。