Visualizing electron–phonon and anharmonic phonon–phonon coupling in the kagome ferrimagnet GdMn6Sn6

Author:

Liu Yibing12ORCID,Han Yadong12,Yu Junhong1ORCID,Zhang Hang12ORCID,Yin Qiangwei3,Lei Hechang3ORCID,Hu Jianbo12ORCID,Zhang Dayong1

Affiliation:

1. Laboratory for Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering Physics 1 , Mianyang 621900, China

2. State Key Laboratory for Environment-Friendly Energy Materials, Southwest University of Science and Technology 2 , Mianyang 621010, China

3. Department of Physics and Beijing Key Laboratory of Opto-Electronic Functional Materials and Micro-Nano Devices, Renmin University of China 3 , Beijing 100872, China

Abstract

Kagome magnet RMn6Sn6 (R = Gd-Tm, Lu) with unusual lattice geometry and breaking of time-reversal symmetry is a promising platform to investigate the interaction of topology and magnetism. Since phonons play a vital role in the coupling between magnetism and topological fermions, a fundamental understanding of phonon dynamics is of great significance in this emerging research field. Here, we report a systematic investigation of ultrafast coherent phonon dynamics in GdMn6Sn6 crystals as a function of temperature and excitation fluence using time-resolved pump-probe spectroscopy. When the temperature decreases, the coherent phonon exhibits a hardening trend in frequency with a suppressed decay rate, which can be well-explained by the anharmonic scattering model. Unexpectedly, both the frequency and decay rate of coherent phonons are almost independent of excitation fluence, suggesting a weak electron–phonon scattering process in GdMn6Sn6.

Funder

Science Challenge Project

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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