Zhang Kuokuo, Bao Wenli, Chen Xing, Lu Shunbin
Opt Express. 2021 Nov 8;29(23):38915-38923. doi: 10.1364/OE.443217.
All-optical modulator is a crucial device in next generation of all-optical communications, interconnects, and signal processing. Here, we demonstrate an all-optical phase modulator with graphdiyne (GDY)-deposited microfiber structure. The phase shift of the signal light can be readily controlled by pump light by thermo-optic effect. This all-optical modulator can achieve a phase shift slope of 0.0296 π·mW and a rising time of 5.48 ms at 25 Hz (3 ms, 50 Hz). Modes distributions in GDY-deposited microfiber at different wavelength are numerical analyzed and the normalized phase conversion efficiency of GDY are calculated. The results show that GDY has a considerable normalized phase conversion efficiency of 0.1644 π·mW·mm, which is higher than that of graphene, MXene and WS based all-optical modulators. This work proves the potential of GDY in all-optical modulator device at telecommunication band and provides a support to all-optical signal processing systems.
全光调制器是下一代全光通信、互连和信号处理中的关键器件。在此,我们展示了一种具有沉积有石墨炔(GDY)的微光纤结构的全光相位调制器。信号光的相移可通过泵浦光利用热光效应轻松控制。这种全光调制器在25Hz时可实现0.0296π·mW的相移斜率和5.48ms的上升时间(50Hz时为3ms)。对不同波长下沉积有GDY的微光纤中的模式分布进行了数值分析,并计算了GDY的归一化相位转换效率。结果表明,GDY具有相当可观的0.1644π·mW·mm的归一化相位转换效率,高于基于石墨烯、MXene和WS的全光调制器。这项工作证明了GDY在电信频段全光调制器器件中的潜力,并为全光信号处理系统提供了支持。