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Raman scattering in correlated thin films as a probe of chargeless surface states

机译:相关薄膜中的拉曼散射作为无电荷表面态的探针

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摘要

Several powerful techniques exist to detect topologically protected surface states of weakly interacting electronic systems. In contrast, surface modes of strongly interacting systems which do not carry electric charge are much harder to detect. We propose resonant light scattering as a means of probing the chargeless surface modes of interacting quantum spin systems, and illustrate its efficacy by a concrete calculation for the three-dimensional hyperhoneycomb Kitaev quantum spin liquid phase. We show that resonant scattering is required to efficiently couple to this model's sublattice polarized surface modes, comprised of emergent Majorana fermions that result from spin fractionalization. We demonstrate that the low-energy response is dominated by the surface contribution for thin films, allowing identification and characterization of emergent topological band structures.
机译:存在几种强大的技术来检测弱交互电子系统的受拓扑保护的表面状态。相反,不带电荷的强相互作用系统的表面模式很难检测。我们提出共振光散射作为探测相互作用的量子自旋系统的无电荷表面模式的一种手段,并通过对三维超蜂窝基塔耶夫量子自旋液相的具体计算来说明其功效。我们表明,需要共振散射才能有效地耦合到该模型的亚晶格极化表面模式,该模式由自旋分馏产生的主要马里亚纳费米子组成。我们证明低能量响应是由薄膜的表面贡献所决定的,从而允许识别和表征新兴的拓扑带结构。

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