A novel broadband directional coupler based on an asymmetric dual-core photonic crystal fibet(PCF)is proposed.The asymmetry in the fiher is introduced by the enlargement of one air-hole in dual-core PCF.Numerical inve...A novel broadband directional coupler based on an asymmetric dual-core photonic crystal fibet(PCF)is proposed.The asymmetry in the fiher is introduced by the enlargement of one air-hole in dual-core PCF.Numerical investigation demonstrate that broadband directional coupling with spectral width as large as 370 nm and polarization-dependent loss and uniformity lower than 0.2 and 0.5 dB,respectively,can be achieved.In addition,the proposed fiber shows large tolerance to the variation of the fiber parameters.In particular,the fiber length allows at least 10%derivation from the proposed fiber length of 7.7 mm.展开更多
We propose an ultra-wideband optical diode device based on two-dimensional square-lattice photonic crystals. For the device, the odd mode is completely transmitted in one direction and converted to the fundamental eve...We propose an ultra-wideband optical diode device based on two-dimensional square-lattice photonic crystals. For the device, the odd mode is completely transmitted in one direction and converted to the fundamental even mode, but completely reflected in the other direction. The operation bandwidth of the device is preserved within a rather wide range of frequencies, which is over 6.5% of the central frequency. A directional coupler and 90° bend are utilized as the composite function device with mode filter and mode converter. It is possible that the photonic crystal device can help to construct on-chip optical logical devices and benefit greatly to the optical systems with multiple spatial modes.展开更多
基于小孔耦合理论和电磁场全波分析法,根据正向叠加和反向抵消原则,确定耦合孔半径、间距和数量,并通过HFSS软件进行仿真设计,实现了毫米波段定向耦合器的工作频段展宽;提出了一种新颖的波导腔体三层结构设计方案,解决了波导接触面缝隙...基于小孔耦合理论和电磁场全波分析法,根据正向叠加和反向抵消原则,确定耦合孔半径、间距和数量,并通过HFSS软件进行仿真设计,实现了毫米波段定向耦合器的工作频段展宽;提出了一种新颖的波导腔体三层结构设计方案,解决了波导接触面缝隙切割电流引起的毫米波辐射问题,实现了波导无辐射装配,提高了器件的稳定性和可靠性。成功研制的毫米波W波段宽带、高耦合度定向耦合器在88~102 GHz频段传输损耗0.6 d B,两路输出幅度误差优于±0.3 d B,隔离度大于18 d B。展开更多
SOI zero-gap directional couplers are studied by using large cross-section single-mode rib waveguide theory and dual-mode interference principle in silicon direct bonding SOI by back-polishing. And they are fabricated...SOI zero-gap directional couplers are studied by using large cross-section single-mode rib waveguide theory and dual-mode interference principle in silicon direct bonding SOI by back-polishing. And they are fabricated by using KOH anistropic etching. The insertion loss is measured to 4.81 dB, and the crosstalk is below —18.6 dB at a wavelength of 1.3μm.展开更多
基金supported by the Senior Talent Foundation of Jiangsu University(06JDG062)the Natural Science Foundation of the Jiangsu Higher Education Institutions of China(08KJB510001)+2 种基金Qianjiang Talent Project of Zhejiang Province(2007R10015)the Science Foundation of Ningbo(2008A610001)the National Natural Science Foundation of China(10574058 and 50735001)
文摘A novel broadband directional coupler based on an asymmetric dual-core photonic crystal fibet(PCF)is proposed.The asymmetry in the fiher is introduced by the enlargement of one air-hole in dual-core PCF.Numerical investigation demonstrate that broadband directional coupling with spectral width as large as 370 nm and polarization-dependent loss and uniformity lower than 0.2 and 0.5 dB,respectively,can be achieved.In addition,the proposed fiber shows large tolerance to the variation of the fiber parameters.In particular,the fiber length allows at least 10%derivation from the proposed fiber length of 7.7 mm.
基金supported in part by the National Natural Science Foundation of China(Nos.60907032,61205121,and 61275124)the China Postdoctoral Science Foundation(No.2013M540361)+1 种基金the Natural Science Foundation of Zhejiang Province(No.LY13F010011)the Zhejiang Youth Science Fund(No.LQ13F050005)
文摘We propose an ultra-wideband optical diode device based on two-dimensional square-lattice photonic crystals. For the device, the odd mode is completely transmitted in one direction and converted to the fundamental even mode, but completely reflected in the other direction. The operation bandwidth of the device is preserved within a rather wide range of frequencies, which is over 6.5% of the central frequency. A directional coupler and 90° bend are utilized as the composite function device with mode filter and mode converter. It is possible that the photonic crystal device can help to construct on-chip optical logical devices and benefit greatly to the optical systems with multiple spatial modes.
文摘基于小孔耦合理论和电磁场全波分析法,根据正向叠加和反向抵消原则,确定耦合孔半径、间距和数量,并通过HFSS软件进行仿真设计,实现了毫米波段定向耦合器的工作频段展宽;提出了一种新颖的波导腔体三层结构设计方案,解决了波导接触面缝隙切割电流引起的毫米波辐射问题,实现了波导无辐射装配,提高了器件的稳定性和可靠性。成功研制的毫米波W波段宽带、高耦合度定向耦合器在88~102 GHz频段传输损耗0.6 d B,两路输出幅度误差优于±0.3 d B,隔离度大于18 d B。
基金the High Technology Research and Development Programme of China
文摘SOI zero-gap directional couplers are studied by using large cross-section single-mode rib waveguide theory and dual-mode interference principle in silicon direct bonding SOI by back-polishing. And they are fabricated by using KOH anistropic etching. The insertion loss is measured to 4.81 dB, and the crosstalk is below —18.6 dB at a wavelength of 1.3μm.