对同轴电缆进行周期性钻孔形成同轴电缆布拉格电栅,通过三维电磁仿真软件Ansoft High Frequency Structure Simulator(Ansoft Hfss)对同轴布拉格电栅进行了建模和仿真,仿真结果和实验结果进行对比,频率特性基本一致,因此仿真结果可以作...对同轴电缆进行周期性钻孔形成同轴电缆布拉格电栅,通过三维电磁仿真软件Ansoft High Frequency Structure Simulator(Ansoft Hfss)对同轴布拉格电栅进行了建模和仿真,仿真结果和实验结果进行对比,频率特性基本一致,因此仿真结果可以作为电栅特性研究的依据。对于传感应用,文中对同轴布拉格电栅周期长度、钻孔尺寸等参数进行了优化,减小了线宽,提高了传感精度。研究为进一步实现基于同轴布拉格电栅的传感器研究及参数优化提供了理论指导和实验基础。展开更多
We show a simple, convenient, and cost-effective scheme for tunable frequency upconversion at millimeterwave band without a local oscillator. By launching a 2.5-Gb/s directly modulated baseband signal into a Fabry-Per...We show a simple, convenient, and cost-effective scheme for tunable frequency upconversion at millimeterwave band without a local oscillator. By launching a 2.5-Gb/s directly modulated baseband signal into a Fabry-Perot laser diode (FP-LD), the mode of the FP-LD is locked by the high-order sideband of the injected signal. The beating frequency of the injection-locked mode and the injected signal can generate upconversion subcarriers. In our experiment, tunable frequency subcarriers of 28.4, 29.3, and 30.5 GHz are obtained without any radio-frequency local oscillator. The single sideband phase noises of -83.88, -76.36, and -78.54 dBc/Hz @ 10 kHz (at 28.4-, 29.3-, and 30.5-GHz subcarriers, respectively) are shown. The proposed scheme has potential to generate much higher frequency carriers.展开更多
文摘对同轴电缆进行周期性钻孔形成同轴电缆布拉格电栅,通过三维电磁仿真软件Ansoft High Frequency Structure Simulator(Ansoft Hfss)对同轴布拉格电栅进行了建模和仿真,仿真结果和实验结果进行对比,频率特性基本一致,因此仿真结果可以作为电栅特性研究的依据。对于传感应用,文中对同轴布拉格电栅周期长度、钻孔尺寸等参数进行了优化,减小了线宽,提高了传感精度。研究为进一步实现基于同轴布拉格电栅的传感器研究及参数优化提供了理论指导和实验基础。
基金supported in part by the National Basic Research Program of China(No.2012CB315704)the Specialized Research Fund for the Doctoral Program of Higher Education(NO.20120032130010)
文摘We show a simple, convenient, and cost-effective scheme for tunable frequency upconversion at millimeterwave band without a local oscillator. By launching a 2.5-Gb/s directly modulated baseband signal into a Fabry-Perot laser diode (FP-LD), the mode of the FP-LD is locked by the high-order sideband of the injected signal. The beating frequency of the injection-locked mode and the injected signal can generate upconversion subcarriers. In our experiment, tunable frequency subcarriers of 28.4, 29.3, and 30.5 GHz are obtained without any radio-frequency local oscillator. The single sideband phase noises of -83.88, -76.36, and -78.54 dBc/Hz @ 10 kHz (at 28.4-, 29.3-, and 30.5-GHz subcarriers, respectively) are shown. The proposed scheme has potential to generate much higher frequency carriers.