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Complementary terahertz absorption and inelastic neutron study of the dynamic anisotropy contribution to zone-center spin waves in a canted antiferromagnetNdFeO3

机译:互补的太赫兹吸收和无弹性的中子研究对倾斜的反霉菌尼氏症中的动态各向异性对区域中心旋转波的贡献

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摘要

We employ a combination of pulsed- and continuous-wave polarized terahertz spectroscopy techniques to probe temperature-dependent spin waves in the antiferromagnet NdFeO3. Our optical data span 1.6-467 K and reveal a conspicuous spin reorientation between 110 and 170 K, during which the lower-energy mode softens completely. Complementary inelastic neutron scattering reveals that the frequencies of the optically excited spin waves are consistent with a temperature-variable spin gap in the low-energy spin-wave dispersion of NdFeO3. The result links the temperature dependence of the spin waves to a dynamic in-plane anisotropy. The magnetic anisotropy is calculated based on the results of the optical measurements. The change observed in the anisotropy energy along the a and c crystal axes suggests that the spin reorientation evident in NdFeO3 is driven by temperature-dependent in-plane anisotropy.
机译:我们采用脉冲和连续波偏振的太赫兹光谱技术的组合来探测反霉菌NdfeO3中的温度依赖性旋转波。我们的光学数据跨度1.6-467 k并显示110和170 k之间的显着自旋重新定位,在此期间,下能量模式完全软化。互补的梭形中子散射揭示了光学激发旋转波的频率与NdFeO 3的低能量旋转波分散体中的温度变旋间隙一致。结果将旋转波的温度依赖性链接到动态面内各向异性。基于光学测量结果计算磁各向异性。沿A和C晶轴的各向异性能量观察到的变化表明,NDFeO3中明显的自旋重新定向由温度依赖于平面的面内各向异性驱动。

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