论文标题
MNBI2TE4原子薄层中的超快相干层中层中的声子动力学
Ultrafast coherent interlayer phonon dynamics in atomically thin layers of MnBi2Te4
论文作者
论文摘要
原子上的MNBI2TE4晶体是一种新型的磁性绝缘子,表现出异国情调的量子物理。在这里,我们使用时间分辨的泵探针反射率光谱法报告了几层MNBI2TE4中超快载体动力学和相干层中音子的系统研究。在时域直接观察到来自层间呼吸模式的明显相干声子振荡。我们发现相干振荡频率,光载体和相干的声子衰减速率都敏感地取决于样品厚度。时间分辨的测量值通过超频率拉曼光谱测量值进行补充,这既证实了层间呼吸模式,又可以观察到Interlayer剪切模式。这些模式的层依赖性使我们能够同时提取平面外和平面内层间力常数。我们的研究不仅揭示了层间的耦合强度,而且还阐明了这种新型二维材料的超快光学特性。
The atomically thin MnBi2Te4 crystal is a novel magnetic topological insulator, exhibiting exotic quantum physics. Here we report a systematic investigation of ultrafast carrier dynamics and coherent interlayer phonons in few-layer MnBi2Te4 as a function of layer number using time-resolved pump-probe reflectivity spectroscopy. Pronounced coherent phonon oscillations from the interlayer breathing mode are directly observed in the time domain. We find that the coherent oscillation frequency, the photocarrier and coherent phonon decay rates all depend sensitively on the sample thickness. The time-resolved measurements are complemented by ultralow-frequency Raman spectroscopy measurements, which both confirm the interlayer breathing mode and additionally enable observation of the interlayer shear mode. The layer dependence of these modes allows us to extract both the out-of-plane and in-plane interlayer force constants. Our studies not only reveal the interlayer van der Waals coupling strengths, but also shed light on the ultrafast optical properties of this novel two-dimensional material.