Xiao Yi, Zhang Jun, Yu Jianhui, Dong Huazhuo, Wei Yinyin, Luo Yunhan, Zhong Yongchun, Qiu Wentao, Dong Jiangli, Lu Huihui, Guan Heyuan, Tang Jieyuan, Zhu Wenguo, Chen Zhe
Opt Express. 2018 May 28;26(11):13759-13772. doi: 10.1364/OE.26.013759.
The effective mode index (EMI) of a graphene-coated side-polished fiber (GSPF) is calculated numerically. Whereby, the influences of graphene atom layer number, residual radius of SPF, light frequency, scattering rate of graphene, and temperature on the EMI are investigated comprehensively. Two types of mechanisms for the electro-optical absorption modulation are found for such GSPF-based modulator. One mechanism is Pauli blocking effect (PBE) and the other is plasmonic attenuation effect (PAE). With the optimal design parameters, a PBE-based modulator is theoretically predicted to have a 0.0072 dB/μm modulation depth, 2.92 V driving voltage swing, 6.35 nJ/bit power consumption, and 56.2 THz optical modulation bandwidth. It is also predicted that a PAE-based modulator could have a 0.0056 dB/μm modulation depth, 0.6 V driving voltage swing, 0.27 nJ/bit power consumption, and 2.5 THz optical modulation bandwidth. By further optimization, the modulator performance such as the relatively high power consumption and the narrow operation bandwidth can be improved. Owing to their seamless connection to optical fiber networks, the GSPF-based modulators have great potential to be used in fast and high-capacity optical communication systems.
对石墨烯包覆的边抛光纤(GSPF)的有效模式折射率(EMI)进行了数值计算。据此,全面研究了石墨烯原子层数、边抛光纤的剩余半径、光频率、石墨烯的散射率以及温度对EMI的影响。对于这种基于GSPF的调制器,发现了两种电光吸收调制机制。一种机制是泡利阻塞效应(PBE),另一种是等离子体衰减效应(PAE)。通过优化设计参数,理论预测基于PBE的调制器具有0.0072 dB/μm的调制深度、2.92 V的驱动电压摆幅、6.35 nJ/bit的功耗以及56.2 THz的光调制带宽。还预测基于PAE的调制器可以具有0.0056 dB/μm的调制深度、0.6 V的驱动电压摆幅、0.27 nJ/bit的功耗以及2.5 THz的光调制带宽。通过进一步优化,可以改善调制器的性能,如相对较高的功耗和较窄的工作带宽。由于它们与光纤网络的无缝连接,基于GSPF的调制器在快速和高容量光通信系统中具有巨大的应用潜力。