论文标题

石墨烯相干晶格动力学的高谐波光谱

High-Harmonic Spectroscopy of Coherent Lattice Dynamics in Graphene

论文作者

Rana, Navdeep, Mrudul, M. S., Kartashov, Daniil, Ivanov, Misha, Dixit, Gopal

论文摘要

固体的高谐波光谱是一种功能强大的工具,它可以访问电子结构和固体的超快电子响应,从其带状结构和状态密度到相变,包括拓扑边缘状态的出现到Petahertz电子响应。然而,尽管取得了这些成功,但几乎没有采用高谐波光谱来分析一致的飞秒晶格振动在Attsecond电子响应中的作用。在这里,我们研究单层石墨烯中的相干声子激发,以显示如何使用高谐波光谱检测相干晶格动力学(尤其是纵向和横向光学声子模式)对电子响应的影响。平面声子模式的相干激发导致在发射谐波辐射的光谱中出现边带。我们表明,光谱位置和边带发射的极化提供了与激发声子模式相关的动力对称性的敏感探针。我们的工作带来了高谐波光谱法的关键优势 - 将次秒次秒与数十秒的时间分辨率的组合在​​一起 - 探测探测声子驱动的电子响应及其对固体动力学对称性的依赖性的问题。

High-harmonic spectroscopy of solids is a powerful tool, which provides access to both electronic structure and ultrafast electronic response of solids, from their band structure and density of states, to phase transitions, including the emergence of the topological edge states, to the PetaHertz electronic response. However, in spite of these successes, high harmonic spectroscopy has hardly been applied to analyse the role of coherent femtosecond lattice vibrations in the attosecond electronic response. Here we study coherent phonon excitations in monolayer graphene to show how high-harmonic spectroscopy can be used to detect the influence of coherent lattice dynamics, particularly longitudinal and transverse optical phonon modes, on the electronic response. Coherent excitation of the in-plane phonon modes results in the appearance of sidebands in the spectrum of the emitted harmonic radiation. We show that the spectral positions and the polarisation of the sideband emission offer a sensitive probe of the dynamical symmetries associated with the excited phonon modes. Our work brings the key advantage of high harmonic spectroscopy -- the combination of sub-femtosecond to tens of femtoseconds temporal resolution -- to the problem of probing phonon-driven electronic response and its dependence on the dynamical symmetries in solids.

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