论文标题

在强的自旋轨道耦合双层抗铁磁体中,对称分辨的两麦克农兴激发

Symmetry-resolved two-magnon excitations in a strong spin-orbit-coupled bilayer antiferromagnet

论文作者

Li, Siwen, Drueke, Elizabeth, Porter, Zach, Jin, Wencan, Lu, Zhengguang, Smirnov, Dmitry, Merlin, Roberto, Wilson, Stephen D., Sun, Kai, Zhao, Liuyan

论文摘要

我们使用了极化拉曼光谱和自旋波计算的组合来研究强旋轨偶联(SOC)双层perovskite抗Fiferromagnet $ SR_3IR_2O_7 $中的磁激发。我们在〜800 $ cm^{ - 1} $和〜1400 $ cm^{ - 1} $中观察到了两个广泛的拉曼功能,这是由磁激发引起的。毫无规定,相对于基础四边形($ d_ {4h} $)晶体晶体,〜800 $ cm^{ - 1} $功能是完全对称的($ a_ {1g} $),它的宽线形状与其宽线形状相同,可以确定其范围的可能性,可以使单个元音激发的可能性排除在外的可能性。相比之下,〜1400 $ cm^{ - 1} $功能都显示在$ a_ {1g} $和$ b_ {2g} $ channels中。 From spin wave and two-magnon scattering cross-section calculations of a tetragonal bilayer antiferromagnet, we identified the ~ 800 $cm^{-1}$ (~ 1400 $cm^{-1}$) feature as two-magnon excitations with pairs of magnons from the zone-center $Γ$ point (zone-boundary van Hove singularity X point).我们进一步发现,与单层外部分支相比,该区域中心的两麦克农散射是双层钙钛矿磁体所独有的,除了它们的单层外,该散射具有光学分支。这种区域中心的两块磁力模式在对称性上与时间反转对称性旋转波间隙和相位模式不同,以解释$ sr_3ir_2o_7 $ $ sr_3ir_2o_7 $的〜92 meV(742 $ cm^{ - 1} $)gap。

We used a combination of polarized Raman spectroscopy and spin wave calculations to study magnetic excitations in the strong spin-orbit-coupled (SOC) bilayer perovskite antiferromagnet $Sr_3Ir_2O_7$. We observed two broad Raman features at ~ 800 $cm^{-1}$ and ~ 1400 $cm^{-1}$ arising from magnetic excitations. Unconventionally, the ~ 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 ~ 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 ~ 800 $cm^{-1}$ (~ 1400 $cm^{-1}$) feature as two-magnon excitations with pairs of magnons from the zone-center $Γ$ 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 ~ 92 meV (742 $cm^{-1}$) gap in RIXS magnetic excitation spectra of $Sr_3Ir_2O_7$.

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