Reimers Sonka, Odenbreit Lukas, Šmejkal Libor, Strocov Vladimir N, Constantinou Procopios, Hellenes Anna B, Jaeschke Ubiergo Rodrigo, Campos Warlley H, Bharadwaj Venkata K, Chakraborty Atasi, Denneulin Thibaud, Shi Wen, Dunin-Borkowski Rafal E, Das Suvadip, Kläui Mathias, Sinova Jairo, Jourdan Martin
Institut für Physik, Johannes Gutenberg-Universität Mainz, 55099, Mainz, Germany.
Inst. of Physics Academy of Sciences of the Czech Republic, Cukrovarnická 10, Praha 6, Czech Republic.
Nat Commun. 2024 Mar 8;15(1):2116. doi: 10.1038/s41467-024-46476-5.
Altermagnetism represents an emergent collinear magnetic phase with compensated order and an unconventional alternating even-parity wave spin order in the non-relativistic band structure. We investigate directly this unconventional band splitting near the Fermi energy through spin-integrated soft X-ray angular resolved photoemission spectroscopy. The experimentally obtained angle-dependent photoemission intensity, acquired from epitaxial thin films of the predicted altermagnet CrSb, demonstrates robust agreement with the corresponding band structure calculations. In particular, we observe the distinctive splitting of an electronic band on a low-symmetry path in the Brilliouin zone that connects two points featuring symmetry-induced degeneracy. The measured large magnitude of the spin splitting of approximately 0.6 eV and the position of the band just below the Fermi energy underscores the significance of altermagnets for spintronics based on robust broken time reversal symmetry responses arising from exchange energy scales, akin to ferromagnets, while remaining insensitive to external magnetic fields and possessing THz dynamics, akin to antiferromagnets.
交替磁性代表一种具有补偿序的新兴共线磁相,以及在非相对论能带结构中具有非常规交替偶宇称波自旋序。我们通过自旋积分软X射线角分辨光电子能谱直接研究费米能附近这种非常规的能带分裂。从预测的交替磁体CrSb的外延薄膜获得的实验测量的角度相关光发射强度,与相应的能带结构计算结果高度吻合。特别是,我们观察到在布里渊区的一条低对称路径上电子能带的独特分裂,该路径连接了两个具有对称性诱导简并的点。测量得到的约0.6 eV的大自旋分裂量值以及该能带刚好低于费米能的位置,突显了交替磁体对于自旋电子学的重要性,基于交换能尺度产生的强大破时间反演对称性响应,类似于铁磁体,同时对外部磁场不敏感且具有太赫兹动力学,类似于反铁磁体。