Helmholtz-Zentrum Dresden-Rossendorf e.V., Institute of Ion Beam Physics and Materials Research, Bautzner Landstr. 400, 01328, Dresden, Germany.
Institute for Solid State Research, IFW Dresden, 01069, Dresden, Germany.
Nat Commun. 2023 Mar 17;14(1):1491. doi: 10.1038/s41467-023-37081-z.
Chiral effects originate from the lack of inversion symmetry within the lattice unit cell or sample's shape. Being mapped onto magnetic ordering, chirality enables topologically non-trivial textures with a given handedness. Here, we demonstrate the existence of a static 3D texture characterized by two magnetochiral parameters being magnetic helicity of the vortex and geometrical chirality of the core string itself in geometrically curved asymmetric permalloy cap with a size of 80 nm and a vortex ground state. We experimentally validate the nonlocal chiral symmetry breaking effect in this object, which leads to the geometric deformation of the vortex string into a helix with curvature 3 μm and torsion 11 μm. The geometric chirality of the vortex string is determined by the magnetic helicity of the vortex texture, constituting coupling of two chiral parameters within the same texture. Beyond the vortex state, we anticipate that complex curvilinear objects hosting 3D magnetic textures like curved skyrmion tubes and hopfions can be characterized by multiple coupled magnetochiral parameters, that influence their statics and field- or current-driven dynamics for spin-orbitronics and magnonics.
手性效应源于晶格单元或样品形状中缺乏反转对称。在手性磁有序中,手性能够产生具有特定手性的拓扑非平凡织构。在这里,我们证明了在尺寸为 80nm 的几何弯曲非对称坡莫合金帽中存在一种由两个磁手性参数表征的静态 3D 织构,这两个参数分别是涡旋的磁螺旋度和芯丝本身的几何手性。我们在这个物体中实验验证了非局域手性对称破缺效应,这导致涡旋丝的几何变形为曲率为 3μm 且扭转为 11μm 的螺旋。涡旋丝的几何手性由涡旋织构的磁螺旋度决定,构成了同一织构中两个手性参数的耦合。除了涡旋态之外,我们预计像弯曲的 skyrmion 管和 hopfion 这样承载 3D 磁织构的复杂曲线物体可以用多个耦合的磁手性参数来表征,这些参数会影响它们的静态和场或电流驱动动力学,从而应用于自旋轨道电子学和磁振子学。