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Direct determination of mode-projected electron-phonon coupling in the time domain

机译:在时域中直接确定模式投影电子-声子耦合

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Ultrafast spectroscopies have become an important tool for elucidating the microscopic description and dynamical properties of quantum materials. In particular, by tracking the dynamics of nonthermal electrons, a material's dominant scattering processes can be revealed. Here, we present a method for extracting the electron-phonon coupling strength in the time domain, using time- and angle-resolved photoemission spectroscopy (TR-ARPES). This method is demonstrated in graphite, where we investigate the dynamics of photoinjected electrons at the K point, detecting quantized energy-loss processes that correspond to the emission of strongly coupled optical phonons. We show that the observed characteristic time scale for spectral weight transfer mediated by phonon-scattering processes allows for the direct quantitative extraction of electron-phonon matrix elements for specific modes.
机译:超快光谱学已成为阐明量子材料的微观描述和动力学性质的重要工具。特别是,通过跟踪非热电子的动力学,可以揭示材料的主要散射过程。在这里,我们提出一种使用时间和角度分辨光发射光谱法(TR-ARPES)在时域中提取电子-声子耦合强度的方法。在石墨中证明了该方法,我们在石墨中研究了在K点处的光注入电子的动力学,检测了与强耦合光子的发射相对应的量化能量损失过程。我们表明,所观察到的由声子散射过程介导的光谱权重转移的特征时间尺度允许对特定模式的电子-声子矩阵元素进行直接定量提取。

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