磁圆二色性
铁磁性
圆极化
极化(电化学)
材料科学
谐振器
光学微腔
光电子学
磁场
X射线磁圆二色性
圆二色性
光学
磁化
物理
谱线
化学
激光器
物理化学
量子力学
结晶学
天文
作者
Dingwei Chen,Zhiyuan Zhao,Nai Jiang,Hui Zhu,Shuai Zhao,Ping‐Heng Tan,Dahai Wei,Houzhi Zheng,Chao Shen
标识
DOI:10.1021/acs.jpclett.2c00594
摘要
Tunable resonator is a powerful building block in fields like color filtering and optical sensing. The control of its polarization characteristics can significantly expand the applications. Nevertheless, the methods for resonator dynamic tuning are limited. Here, a magnetically regulated circular polarized resonant microcavity is demonstrated with an ultrathin ferrimagnetic composite metal layer Ta/CoTb. We successfully tuned the cavity resonant frequency and polarization performance. A huge magnetic circular dichroism (MCD) signal (∼3.41%) is observed, and the microcavity valley position shifts 5.41 nm when a small magnetic field is applied. This resonant cavity has two-stable states at 0 T due to the magnetic remanence of CoTb film and can be switched using a tiny magnetic field (∼0.01 T). Our result shows that the ferrimagnetic film-based tunable microcavity can be a highly promising candidate for on-chip magneto-optical (MO) devices.
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