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首页> 外文期刊>Physical review, B >Electromagnon in the Z-type hexaferrite (BaxSr1-x)(3)Co2Fe24O41
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Electromagnon in the Z-type hexaferrite (BaxSr1-x)(3)Co2Fe24O41

机译:Z型六方铁氧体(BaxSr1-x)(3)Co2Fe24O41中的电磁体

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摘要

We studied experimentally the high-temperature magnetoelectric (BaxSr1-x)(3)Co2Fe24O41 prepared as ceramics (x = 0, 0.2) and a single crystal (x = 0.5) using inelastic neutron scattering, THz time-domain, Raman, and far-infrared spectroscopies. The spectra, measured with varying temperature and magnetic field, reveal rich information about the collective spin and lattice excitations. In the ceramics, we observed an infrared-active magnon which is absent in E-omega perpendicular to z polarized THz spectra of the crystal, and we assume that it is an electromagnon active in E-omega parallel to z polarized spectra. On heating from 7 to 250 K, the frequency of this electromagnon drops from 36 to 25 cm(-1) and its damping gradually increases, so it becomes overdamped at room temperature. Applying external magnetic field has a similar effect on the damping and frequency of the electromagnon, and the mode is no longer observable in the THz spectra above 2 T, as the transverse-conical magnetic structure transforms into a collinear one. Raman spectra reveal another spin excitation with a slightly different frequency and much higher damping. Upon applying magnetic field higher than 3 T, in the low-frequency part of the THz spectra, a narrow excitation appears whose frequency linearly increases with magnetic field. We interpret this feature as the ferromagnetic resonance.
机译:我们通过非弹性中子散射,太赫兹时域,拉曼和远场实验研究了高温磁电(BaxSr1-x)(3)Co2Fe24O41制备为陶瓷(x = 0,0.2)和单晶(x = 0.5) -红外光谱。在变化的温度和磁场下测量的光谱揭示了有关集体自旋和晶格激发的丰富信息。在陶瓷中,我们观察到在垂直于晶体z极化THz光谱的E-ω中不存在红外活性磁振子,并且我们假设它是在平行于z极化谱的E-ω中具有电磁活性的磁振子。在从7 K加热到250 K时,该电磁子的频率从36下降到25 cm(-1),并且其阻尼逐渐增加,因此在室温下变得过阻尼。施加外部磁场对电磁铁的阻尼和频率具有类似的影响,并且在2 T以上的THz光谱中不再观察到该模式,因为横向圆锥形的磁性结构转换为共线的。拉曼光谱揭示了另一种自旋激发,其频率略有不同,并且阻尼更高。在施加高于3 T的磁场时,在太赫兹频谱的低频部分,出现了窄激励,其频率随磁场线性增加。我们将此特征解释为铁磁共振。

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