论文标题
高自旋基塔维亚磁铁中的三晶晶体
Triple-meron crystal in high-spin Kitaev magnets
论文作者
论文摘要
具有非平凡拓扑的旋转纹理在将来的Spintronics应用中具有巨大的希望,因为它们对局部变形非常有力。作为这种自旋纹理之一,梅隆(Meron)被广泛认为是成对出现的,因为它的拓扑等效性与半天空敏化。在高自旋基塔伊夫磁铁中的最新进展中,我们从数字上研究了具有单离子各向异性的经典kitaev-$γ$模型。发现了一个奇特的自旋纹理,包括三个梅隆。这样的状态具有一个奇特的特性,其中一个磁性单位细胞中具有奇数的梅隆,并且可以诱导拓扑厅的效果。因此,这些梅隆不能与文献中报道的Skyrmions分离,并且对于这种反登录现象的一般机制呼吁进行进一步的研究。我们的工作表明,高旋转基塔夫磁铁可以托管强大的非常规的旋转纹理,因此它们不仅为探索Spintronics中的外来状态提供了多功能平台,而且还用于理解凝结的物理学和现场理论中的解元机制。
Spin textures with nontrivial topology hold great promise in future spintronics applications since they are robust against local deformations. The meron, as one of such spin textures, is widely believed to appear in pairs due to its topological equivalence to a half skyrmion. Motivated by recent progresses in high-spin Kitaev magnets, here we investigate numerically a classical Kitaev-$Γ$ model with a single-ion anisotropy. An exotic spin texture including three merons is discovered. Such a state features a peculiar property with an odd number of merons in one magnetic unit cell and it can induce the topological Hall effect.Therefore, these merons cannot be dissociated from skyrmions as reported in the literature and a general mechanism for such a deconfinement phenomenon calls for further studies. Our work demonstrates that high-spin Kitaev magnets can host robust unconventional spin textures and thus they offer a versatile platform not only for exploring exotic states in spintronics but also for understanding the deconfinement mechanism in the condensed-matter physics and the field theory.