Yang Hongwei, Xiao Yihong, Zhang Kaimin, Chen Zefeng, Pan Jintao, Zhuo Linqing, Zhong Yongchun, Zheng Huadan, Zhu Wenguo, Yu Jianhui, Chen Zhe
Opt Express. 2021 May 10;29(10):15631-15640. doi: 10.1364/OE.425777.
An all-fiber integrated photodetector is proposed and demonstrated by assembling a graphene/palladium diselenide (PdSe) Van der Waals heterostructure onto the endface of a standard optical fiber. A gold film is covered on the heterostructure working as an electrode and a mirror, which reflects back the unabsorbed residual light for further reusage. Owing to the low bandgap of PdSe, the all-fiber photodetector shows a broadband photoresponse from 650 to 1550 nm with a high photoresponsivity of 6.68×10 AW, enabling a low light detection of 42.5 pW. And the fastest temporal response is about 660 µs. Taking advantage of heterostructures, the photodetector can work in self-powered mode with the on/off ratio about 82. These findings provide new strategies for integrating two-dimensional materials into optical fibers to realize integrated all-fiber devices with multi-function applications.
通过将石墨烯/二硒化钯(PdSe)范德华异质结构组装到标准光纤的端面上,提出并演示了一种全光纤集成光电探测器。在异质结构上覆盖一层金膜,用作电极和镜子,它将未吸收的残余光反射回去以便进一步再利用。由于PdSe的低带隙,该全光纤光电探测器在650至1550 nm范围内呈现宽带光响应,具有6.68×10 AW的高光响应度,能够实现42.5 pW的低光检测。并且最快的时间响应约为660微秒。利用异质结构,该光电探测器可以在自供电模式下工作,开/关比约为82。这些发现为将二维材料集成到光纤中以实现具有多功能应用的集成全光纤器件提供了新策略。