Chu Rang, Guan Chunying, Yang Jing, Zhu Zheng, Li Ping, Shi Jinhui, Tian Peixuan, Yuan Libo, Brambilla Gilberto
Opt Express. 2017 Jun 12;25(12):13278-13285. doi: 10.1364/OE.25.013278.
We demonstrate theoretically and experimentally a high extinction ratio and compact size TE-pass polarizer made by a D-shaped fiber coated with a double graphene/PMMA stack. The light propagating in the core of the fiber can be efficiently coupled into the graphene sheet thanks to the giant enhancement of the modal evanescent field associated with the high refractive index graphene/PMMA cladding. The strong interaction between the light and graphene produces a large attenuation difference between modes with orthogonal polarizations, resulting in an improved extinction ratio and a reduced insertion loss due to the device compactness. A double graphene/PMMA stack coated polarizer with an extinction ratio of up to 36 dB and an insertion loss of 5 dB has been achieved when the device length is only 2.5 mm. The double graphene/PMMA stack has proved to be significantly better than single graphene/PMMA stack and bilayer graphene/PMMA structures, providing a polarizer with maximum extinction ratio of 44 dB for a length of 4 mm. The achieved results indicate that the proposed high extinction ratio polarizer is a promising candidate for novel in-fiber graphene-based devices.
我们通过理论和实验证明了一种由涂覆有双层石墨烯/聚甲基丙烯酸甲酯(PMMA)堆叠的D形光纤制成的高消光比且尺寸紧凑的横电(TE)模偏振器。由于与高折射率的石墨烯/PMMA包层相关的模式倏逝场的巨大增强,在光纤纤芯中传播的光可以有效地耦合到石墨烯片中。光与石墨烯之间的强相互作用在具有正交偏振的模式之间产生了很大的衰减差异,由于器件紧凑性,导致消光比提高且插入损耗降低。当器件长度仅为2.5毫米时,已实现了消光比高达36分贝且插入损耗为5分贝的双层石墨烯/PMMA堆叠涂覆偏振器。双层石墨烯/PMMA堆叠已被证明明显优于单层石墨烯/PMMA堆叠和双层石墨烯/PMMA结构,对于长度为4毫米的情况,提供了最大消光比为44分贝的偏振器。所取得的结果表明,所提出的高消光比偏振器是新型基于光纤石墨烯的器件的一个有前途的候选者。