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凝聚态
【凝聚态物理-beat365論壇2023年第15期(總567期)】Ultrafast dynamics of low-energy collective excitations in a 2D antiferromagnet MnBi2Te4
浏覽次數:
主講人: 楊魯懿(清華大學物理系)
地點: 物理大樓西樓202報告廳
時間: 2023年6月8日(星期四)15:00-16:30
主持 聯系人: 葉堉 ye_yu@pku.edu.cn
主講人簡介: 楊魯懿,清華大學物理系副教授,博士生導師。2007年獲清華大學學士學位。2013年在美國加州大學伯克利分校獲得物理博士學位。2013-2016年在美國國家強磁場實驗室(洛斯阿拉莫斯國家實驗室)任博士後(LANL Director’s Postdoctoral Fellow)。2016-2019年在加拿大多倫多大學物理系任助理教授,2016年被評為加拿大高級研究所的全球學者(CIFAR Azrieli Global Scholar),2017年被授予Canada Research Chair頭銜。2018年獲得國家級人才計劃,2019年9月至今在清華大學物理系任教。研究方向為量子材料的超快動力學、非線性光學、自旋電子學等。

      The atomically thin MnBi2Te4 crystal is a novel magnetic topological insulator, exhibiting exotic quantum physics. In this work, using time-resolved optical techniques, we report a systematic investigation of coherent interlayer phonons, ultrafast (de)magnetization and coherent magnon dynamics in few-layer MnBi2Te4 as a function of layer number, temperature and applied magnetic field. Pronounced coherent phonon oscillations from the interlayer breathing mode are directly observed in the time domain and further confirmed by ultralow-frequency Raman spectroscopy measurements. Below the Neel temperature, we observe laser-induced (de)magnetization processes that can be used to accurately track the distinct magnetic states in different magnetic field regimes, including showing clear odd-even layer number effects. In addition, strongly field-dependent antiferromagnetic magnon modes with tens of gigahertz frequencies are optically generated and directly observed in the time domain. These measurements present the first comprehensive overview of ultrafast interlayer phonon and spin dynamics in this novel 2D antiferromagnet, paving the way for potential applications in 2D antiferromagnetic spintronics and magnonics as well as further studies of ultrafast control of both magnetization and topological quantum states.