多铁性
物理
凝聚态物理
声子
旋转
联轴节(管道)
磁性
等结构
飞秒
格子(音乐)
铁电性
量子力学
材料科学
晶体结构
激光器
结晶学
电介质
化学
冶金
声学
作者
Kyeong-jin Jang,Jongseok Lim,Jaewook Ahn,Ji‐Hee Kim,Ki‐Ju Yee,Jai Seok Ahn,Sang‐Wook Cheong
标识
DOI:10.1088/1367-2630/12/2/023017
摘要
The concurrent existence of ferroelectricity and magnetism within a single crystalline system characterizes the multiferroic materials discovered in recent years. To understand and develop the multiferroic phenomenon, we need to investigate the unusual coupling between spin and lattice degrees of freedom. Spins in multiferroics are expected to be elastically coupled to phonons. Therefore, the time-dependent study can be a crucial factor in understanding the coupled dynamics. Here, we report the observations of strong dynamic spin–lattice coupling in multiferroic LuMnO3. A coherent optical phonon of 3.6 THz and its temperature dependence is measured for the first time from our femtosecond IR pump and probe spectroscopy. Also, we observed a coherent acoustic phonon of 47 GHz similar to a previous report (Lim et al 2003 Appl. Phys. Lett. 83 4800). Temperature-dependent measurements show that both optical and acoustic phonons become significantly underdamped as temperature decreases to TN, and they disappear below TN. These observations reveal that phonons are coupled to spins by magneto-elastic coupling, and the disappearance of phonon modes at TN is consistent with the isostructural coupling scheme suggested by Lee et al (2008 Nature 451 805).
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