Ultrafast coherent interlayer phonon dynamics in atomically thin layers of MnBi2Te4
Abstrak
Abstract 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.
Topik & Kata Kunci
Penulis (13)
F. Michael Bartram
Yu-Chen Leng
Yongchao Wang
Liangyang Liu
Xue Chen
Huining Peng
Hao Li
Pu Yu
Yang Wu
Miao-Ling Lin
Jinsong Zhang
Ping-Heng Tan
Luyi Yang
Akses Cepat
- Tahun Terbit
- 2022
- Sumber Database
- DOAJ
- DOI
- 10.1038/s41535-022-00495-x
- Akses
- Open Access ✓