论文标题
SR2IRO4中可控的紧急空间自旋调制通过原位剪切应变
Controllable emergent spatial spin modulation in Sr2IrO4 by in situ shear strain
论文作者
论文摘要
对称各向异性相互作用可以同时是铁磁和抗铁磁磁性,但对于不同的晶体学轴。我们表明,诱导正交不可减至表示的各向异性相互作用的竞争代表了获得新的外来磁性状态的一般途径。我们在这里观察到在原位剪切菌株下扭曲了准2D抗铁磁SR2IRO4中的方格晶格平面时,在这里观察到连续可调的12层空间自旋调制的出现来证明这一点。这种翻译对称性的阶段是异常应变激活各向异性相互作用的结果,该相互作用处于第四阶,并与固有的二次各向异性相互作用竞争。这种竞争各向异性的机制与铁磁,抗铁磁磁性和/或dzyaloshinskii-moriya相互作用中的机制不同,并且可以广泛适用且在低尺寸磁体中高度可控。
Symmetric anisotropic interaction can be ferromagnetic and antiferromagnetic at the same time but for different crystallographic axes. We show that inducing competition of anisotropic interactions of orthogonal irreducible representations represents a general route to obtain new exotic magnetic states. We demonstrate it here by observing the emergence of a continuously tunable 12-layer spatial spin modulation when distorting the square lattice planes in the quasi-2D antiferromagnetic Sr2IrO4 under in situ shear strain. This translation-symmetry-breaking phase is a result of an unusual strain activated anisotropic interaction which is at the 4th order and competing with the inherent quadratic anisotropic interaction. Such a mechanism of competing anisotropy is distinct from that among the ferromagnetic, antiferromagnetic, and/or the Dzyaloshinskii-Moriya interactions, and it could be widely applicable and highly controllable in low dimensional magnets.