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Symmetry-Resolved Two-Magnon Excitations in a Strong Spin-Orbit-Coupled Bilayer Antiferromagnet

机译:强大的旋转轨道耦合双层反霉菌中的对称性第二奖项激发

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We used a combination of polarized Raman spectroscopy and spin wave calculations to study magnetic excitations in the strong spin-orbit-coupled bilayer perovskite antiferromagnet Sr3Ir2O7. We observed two broad Raman features at similar to 800 and similar to 1400 cm(-1) arising from magnetic excitations. Unconventionally, the similar to 800 cm(-1) feature is fully symmetric (A(1g)) with respect to the underlying tetragonal (D-4h) crystal lattice which, together with its broad line shape, definitively rules out the possibility of a single magnon excitation as its origin. In contrast, the similar to 1400 cm(-1) feature shows up in both the A(1g) and B-2g channels. From spin wave and two-magnon scattering cross-section calculations of a tetragonal bilayer antiferromagnet, we identified the similar to 800 cm(-1) (1400 cm(-1)) feature as two-magnon excitations with pairs of magnons from the zone-center r point (zone-boundary van Hove singularity X point). We further found that this zone-center two-magnon scattering is unique to bilayer perovskite magnets which host an optical branch in addition to the acoustic branch, as compared to their single layer counterparts. This zone-center two-magnon mode is distinct in symmetry from the time-reversal symmetry broken "spin wave gap" and "phase mode" proposed to explain the similar to 92 meV (742 cm(-1)) gap in resonant inelastic x-ray spectroscopy magnetic excitation spectra of Sr3Ir2O7.
机译:我们使用了极化拉曼光谱和旋转波计算的组合,以研究强旋转轨道耦合双层钙钛矿钙钛矿反霉菌SR3IR2O7中的磁激发。我们观察到两个类似于800的宽拉曼特性,而且类似于磁激励引起的1400厘米(-1)。非常规地,类似于800cm(-1)特征是相对于底层四边形(D-4H)晶格的完全对称(a(1g)),其与其宽的线形状一起,明确地排除了a的可能性单个巨大的励磁作为原点。相反,类似于1400cm(-1)特征在A(1G)和B-2G通道中出现。从旋转波和双元旦散射横截面计算四边形双层反霉素的横截面计算,我们将类似于800cm(-1)(1400cm(-1))的特征,作为来自区域的一对的千吨的两个奖金激励 - Center R点(区域边界范索奇点X点)。我们进一步发现,与它们的单层对应物相比,该区域中心两槌散射是除了声学分支之外的光学分支之外的双层蠕动磁铁是独一无二的。该区域 - 中心的两个Magnon模式在对称性的对称性中不同于时间反转对称的“旋转波形差距”和“相位模式”,提出了类似于92mev(742cm(-1))间隙中的共振无弹性x -Rea射线光谱磁激发SR3IR2O7的磁激谱。

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  • 来源
    《Physical review letters》 |2020年第8期|087202.1-087202.6|共6页
  • 作者单位

    Univ Michigan Dept Phys Ann Arbor MI 48109 USA;

    Univ Michigan Dept Phys Ann Arbor MI 48109 USA;

    Univ Calif Santa Barbara Mat Dept Santa Barbara CA 93106 USA;

    Univ Michigan Dept Phys Ann Arbor MI 48109 USA|Auburn Univ Dept Phys 380 Duncan Dr Auburn AL 36849 USA;

    Natl High Magnet Field Lab Tallahassee FL 32310 USA|Florida State Univ Dept Phys Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab Tallahassee FL 32310 USA;

    Univ Michigan Dept Phys Ann Arbor MI 48109 USA;

    Univ Calif Santa Barbara Mat Dept Santa Barbara CA 93106 USA;

    Univ Michigan Dept Phys Ann Arbor MI 48109 USA;

    Univ Michigan Dept Phys Ann Arbor MI 48109 USA;

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