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Evidence for Dominant Phonon-Electron Scattering in Weyl Semimetal WP 2

机译:在Weyl半型WP 2中占主导地位声子 - 电子散射的证据

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Topological semimetals have revealed a wide array of novel transport phenomena, including electron hydrodynamics, quantum field theoretic anomalies, and extreme magnetoresistances and mobilities. However, the scattering mechanisms central to the fundamental transport properties remain largely unexplored. Here, we reveal signatures of significant phonon-electron scattering in the type-II Weyl semimetal WP 2 via temperature-dependent Raman spectroscopy. Over a large temperature range, we find that the decay rates of the lowest energy A 1 modes are dominated by phonon-electron rather than phonon-phonon scattering. In conjunction with first-principles calculations, a combined analysis of the momentum, energy, and symmetry-allowed decay paths indicates this results from finite momentum interband and intraband scattering of the electrons. The excellent agreement with theory further suggests that such results could be true for the acoustic modes. We thus provide evidence for the importance of phonons in the transport properties of topological semimetals and identify specific properties that may contribute to such behavior in other materials.
机译:拓扑半球形揭示了广泛的新型运输现象,包括电子流体动力学,量子场理论异常和极端磁阻和迁移率。然而,散射机制到基本运输特性的核心仍然很大程度上是未开发的。这里,通过温度依赖的拉曼光谱揭示II型Weyl半型WP 2中显着的声子电子散射的签名。在一个大的温度范围内,我们发现最低能量A 1模式的衰减率由声子 - 电子而不是声子 - 声子散射。结合第一原理计算,对动量,能量和对称允许的衰减路径的组合分析表明这是来自电子的有限动量和电子的IntraBand散射的结果。与理论的良好协议进一步表明,这些结果对于声学模式可能是正确的。因此,我们为声子的重要性提供了证据,以拓扑半球的运输属性,并确定可能导致其他材料中这种行为有助于这种行为的特定性质。

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