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TM-pass polarizer based on multilayer graphene polymer waveguide 被引量:1
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作者 cai ke-su LI Yue-e +4 位作者 WEI Wen-jing MU Xi-jiao MA A-ning WANG Zhong and SONG Dan-ming 《Optoelectronics Letters》 EI 2018年第3期180-184,共5页
A TM-pass polarizer based on multilayer graphene polymer waveguide is proposed and theoretically analyzed.The mode properties,the extinction ratio,the insertion loss and the bandwidth are also discussed.The results sh... A TM-pass polarizer based on multilayer graphene polymer waveguide is proposed and theoretically analyzed.The mode properties,the extinction ratio,the insertion loss and the bandwidth are also discussed.The results show that a TM-pass polarizer,which only guides the TM mode,can be achieved by multilayer graphene polymer waveguide.With length of 150μm,the proposed polarizer can achieve extinction ratio of 33 dB and insertion loss of 0.5 d B at optical wavelength of 1.55μm.This device has an excellent performance,including large extinction ratio and low insertion loss within the spectral range from 1.45μm to 1.6μm. 展开更多
关键词 TM-pass POLARIZER MULTILAYER GRAPHENE poly-mer waveguide
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Design and analysis of Wedge-enhanced Raman spectroscopy substrate
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作者 Ma A-ning Wei Wen-jing +4 位作者 Peng Si-chang Li Yue-e cai ke-su Wang Zhong Mu Xi-jiao 《Optoelectronics Letters》 EI 2021年第5期262-265,共4页
Here,a novel Au Wedge-enhanced Raman spectroscopy(WERS)substrate is proposed.The electric field enhancement factor and the effective mode field radius with varying geometry parameters are investigated.The proper excit... Here,a novel Au Wedge-enhanced Raman spectroscopy(WERS)substrate is proposed.The electric field enhancement factor and the effective mode field radius with varying geometry parameters are investigated.The proper excitation wavelength 633 nm is obtained.The practical application of WERS substrate is discussed.The Au WERS not only can provide a continuous extremely highly localized electric field as surface-enhanced Raman scattering(SERS)hotspots,but also can offer 10 orders of magnitude of SERS enhancement factor.The corresponding results reveal that WERS substrate will be widely applied in optics,biology,chemistry and other fields. 展开更多
关键词 Design and analysis of Wedge-enhanced Raman spectroscopy substrate RAMAN
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