Murai Toshiya, Shoji Yuya, Nishiyama Nobuhiko, Mizumoto Tetsuya
Opt Express. 2020 Oct 12;28(21):31675-31685. doi: 10.1364/OE.403129.
Nonvolatile optical switches are promising components for low-power photonic integrated circuits with multiple functionalities. In this study, we experimentally demonstrate magneto-optical switches integrated with a magnet array. Optical switches in both microring and Mach-Zehnder configurations are fabricated on a high-quality single-crystalline magneto-optical material Ce:YIG. The switched state is alternated by a current-induced magnetic field from an integrated electromagnet and remained without any external power supply owing to the nonvolatile magnetization of thin-film magnets. Subsequently, the arbitrary level control of optical transmission is demonstrated by changing the magnetization state of integrated thin-film magnets with a current applied in the microring gate switch, and a maximum switching ratio over 25 dB is achieved in the Mach-Zehnder switch. The latching operation is presented with a 1-µs pulsed voltage.
非易失性光开关是具有多种功能的低功耗光子集成电路的有前途的组件。在本研究中,我们通过实验展示了与磁体阵列集成的磁光开关。微环和马赫-曾德尔配置的光开关均在高质量的单晶磁光材料Ce:YIG上制造。开关状态由集成电磁铁的电流感应磁场交替,并且由于薄膜磁体的非易失性磁化,在没有任何外部电源的情况下保持不变。随后,通过在微环栅极开关中施加电流来改变集成薄膜磁体的磁化状态,实现了光传输的任意电平控制,并且在马赫-曾德尔开关中实现了超过25 dB的最大开关比。采用1 µs脉冲电压实现了锁存操作。