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Anisotropic superexchange through nonmagnetic anions with spin-orbit coupling

机译:通过具有旋转轨道耦合的非磁性阴离子的各向异性超细管

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Anisotropic superexchange interaction is one of the most important interactions in realizing exotic quantum magnetism, which is traditionally regarded to originate from magnetic ions and has no relation with the nonmagnetic ions. In our work, by studying a multi-orbital Hubbard model with spin-orbit coupling on both magnetic cations and nonmagnetic anions, we analytically demonstrate that the spin-orbit coupling on nonmagnetic anions alone can induce antisymmetric Dzyaloshinskii-Moriya interaction, symmetric anisotropic exchange and single ion anisotropy on the magnetic ions and thus it actually contributes to anisotropic superexchange on an equal footing as that of magnetic ions. Our results promise one more route to realize versatile exotic phases in condensed matter systems, long-range orders in low dimensional materials and switchable single molecule magnetic devices for recording and manipulating quantum information through nonmagnetic anions.
机译:各向异性超速相互作用是实现异国情调量子磁性的最重要的相互作用之一,传统上是源自磁离子,并且与非磁离子无关。 在我们的工作中,通过在磁性阳离子和非磁性阴离子上使用旋转轨道耦合研究多轨喧嚣的模型,我们分析证明单独的非磁性阴离子上的旋转轨道耦合可以诱导反对称Dzyaloshinskii-moriya相互作用,对称各向异性交换和 磁离子上的单离子各向异性,因此它实际上有助于各向异性超细,因为磁离子的相等基础。 我们的结果承诺提供一种在冷凝物系统中实现多功能异国情调阶段的路线,低尺寸材料的远程订单和可通过非磁性阴离子记录和操纵量子信息的可切换单分子磁性装置。

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