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Magnetic dynamics and spin-phonon coupling in the antiferromagnet Ni2NbBO6

机译:磁动力学和旋转声子耦合在反霉画NI2NBBO6中

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摘要

Antiferromagnetic systems with rich spin dynamics and pronounced interplay between magnetic and lattice degrees of freedom are of great interest in the emerging field of terahertz and subterahertz magnonics and spintronics. Here we report on spin and lattice dynamics of single crystals of Ni2NbBO6 studied with the use of polarized Raman spectroscopy in the temperature range of 10-300 K which includes the antiferromagnetic transition at T-N = 23.5 K. Well-defined and highly polarized magnetic excitations were observed below and partly above T-N. Three magnetic modes at 30, 84, and 113 cm(-1) (at T = 10 K) were detected. The two high-energy magnetic excitations were identified as two-magnon modes. In total, 57 out of the expected 60 Raman-active phonons were registered and identified. Several modes revealed a nontrivial spin-phonon coupling manifesting either hardening or softening mostly below T-N. The possible magnetic space groups were determined through symmetry analysis. Spin-wave spectra and density of states were calculated within the linear spin-wave theory for supporting the experimental findings.
机译:具有丰富的自旋动力学的反铁磁系统和磁性和晶格与晶格自由度之间的明显相互作用对太赫兹和潜艇的新兴领域具有很大的兴趣,据Terahertz和Subterahertz Magnonics和SpintRonics。在这里,我们在10-300k的温度范围内使用极化拉曼光谱在10-300k的温度范围内研究的Ni2NBBO6的单晶的旋转和晶格动力学报告,其包括TN = 23.5k的反铁磁性转变。定义明确和高度极化的磁激发在下面观察并部分以上。检测到30,84和113cm(-1)的三种磁性模式(在T = 10 k时)。将两个高能磁激发鉴定为双氧化镁模式。总共有57个预期的60个拉曼活跃的声子被登记并确定。几种模式揭示了非血管旋转声子耦合,展示了硬化或软化,大多低于T-N。通过对称性分析确定可能的磁空间基团。在线性旋转波理论内计算旋转波光谱和各种密度,以支持实验结果。

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  • 来源
    《Physical review, B》 |2018年第10期|共11页
  • 作者单位

    Russian Acad Sci Ioffe Inst St Petersburg 194021 Russia;

    Russian Acad Sci Ioffe Inst St Petersburg 194021 Russia;

    Russian Acad Sci Ioffe Inst St Petersburg 194021 Russia;

    Russian Acad Sci Ioffe Inst St Petersburg 194021 Russia;

    Natl Acad Sci Inst Solid State &

    Semicond Phys Minsk 220072 BELARUS;

    Natl Acad Sci Inst Solid State &

    Semicond Phys Minsk 220072 BELARUS;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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