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Magnetic field dependence of antiferromagnetic resonance in NiO

机译:NiO中反铁磁共振的磁场依赖性

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We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonances in the prototypical antiferromagnet NiO. The frequencies of the magnetic resonances in the vicinity of 1 THz have been determined in the time-domain via time-resolved Faraday measurements after selective excitation by narrow-band superradiant terahertz pulses at temperatures down to 3 K and in magnetic fields up to 10 T. The measurements reveal two antiferromagnetic resonance modes, which can be distinguished by their characteristic magnetic field dependencies. The nature of the two modes is discussed by comparison to an eight-sublattice antiferromagnetic model, which includes superexchange between the next-nearest-neighbor Ni spins, magnetic dipolar interactions, cubic magneto-crystalline anisotropy, and Zeeman interaction with the external magnetic field. Our study indicates that a two-sublattice model is insufficient for the description of spin dynamics in NiO, while the magnetic dipolar and magneto-crystalline interactions play important roles.
机译:我们报告了在原型反铁磁体NiO中反铁磁共振的磁场和温度依赖性的测量结果。在温度低至3 K且磁场高至10 T的情况下,由窄带超辐射太赫兹脉冲选择性激发后,通过时分辨法拉第测量在时域中确定了1 THz附近的磁共振频率这些测量揭示了两种反铁磁共振模式,可以通过它们的特征磁场依赖性来区分。通过与八子格反铁磁模型进行比较来讨论这两种模式的性质,该模型包括下一个近邻Ni自旋之间的超交换,磁偶极相互作用,立方磁晶各向异性以及与外部磁场的塞曼相互作用。我们的研究表明,两个子晶格模型不足以描述NiO中的自旋动力学,而磁偶极和磁晶相互作用则起着重要作用。

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