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Low-power electro-optic phase modulator based on multilayer graphene/silicon nitride waveguide
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作者 Lanting Ji Wei Chen +7 位作者 Yang Gao Yan Xu Chi Wu Xibin Wang Yunji Yi Baohua Li Xiaoqiang Sun Daming Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第8期302-309,共8页
Electro-optic modulator is a key component for on-chip optical signal processing.An electro-optic phase modulator based on multilayer graphene embedded in silicon nitride waveguide is demonstrated to fulfill low-power... Electro-optic modulator is a key component for on-chip optical signal processing.An electro-optic phase modulator based on multilayer graphene embedded in silicon nitride waveguide is demonstrated to fulfill low-power operation.Finite element method is adopted to investigate the interaction enhancement between the graphene flake and the optical mode.The impact of multilayer graphene on the performance of phase modulator is studied comprehensively.Simulation results show that the modulation efficiency improves with the increment of graphene layer number,as well as the modulation length.The 3-dB bandwidth of around 48 GHz is independent of graphene layer number and length.Compared to modulator with two-or four-layer graphene,the six-layer graphene/silicon nitride waveguide modulator can realizeπphase shift at a low-power consumption of 14 fJ/bit when the modulation length is 240μm. 展开更多
关键词 electro-optic modulator GRAPHENE silicon nitride WAVEGUIDE
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The 650-nm variable optical attenuator based on polymer/silica hybrid waveguide
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作者 于跃洋 孙小强 +6 位作者 姬兰婷 何国冰 王希斌 衣云骥 陈长鸣 王菲 张大明 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第5期164-171,共8页
Visible light variable optical attenuators(VOA) are essential devices in the application of channel power regulation and equalization in wavelength-division multiplexing cross-connect nodes in plastic optical fiber... Visible light variable optical attenuators(VOA) are essential devices in the application of channel power regulation and equalization in wavelength-division multiplexing cross-connect nodes in plastic optical fiber(POF) transmission systems.In this paper, a polymer/silica hybrid waveguide thermo–optic attenuator based on multimode interference(MMI) coupler is designed and fabricated to operate at 650 nm. The single-mode transmission condition, MMI coupler, and transition taper dimensions are optimized through the beam propagation method. Thermal analysis based on material properties provides the optimized heater placement angle. The fabricated VOA presents an attenuation of 26.5 dB with a 21-mW electrical input power at 650 nm. The rise time and fall time are 51.99 and 192 μs, respectively. The time–stability measurement results prove its working reliability. 展开更多
关键词 variable optical attenuator thermo–optic attenuator multimode interference POLYMER
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