平坦光频梳可以用于精密测控系统,基于双平行马赫曾德尔调制器与循环移频方式,设计了一种级联式平坦光频梳生成系统。该系统采用两级结构,第一级利用相位调制器产生两个具有一定频率间隔的相干光载波,作为第二级循环移频环路的两个输入...平坦光频梳可以用于精密测控系统,基于双平行马赫曾德尔调制器与循环移频方式,设计了一种级联式平坦光频梳生成系统。该系统采用两级结构,第一级利用相位调制器产生两个具有一定频率间隔的相干光载波,作为第二级循环移频环路的两个输入种子光,每个种子光在环路中通过循环移频的方式生成一个子光梳,两个子光梳再级联成一个带宽更大的光频梳。建立了系统的理论分析模型,并用VPI软件进行了系统仿真,利用该方案可以生成104线频率间隔为12.5 GHz,平坦度为1.31 d B的光频梳。仿真结果与理论分析相符。展开更多
Generation of single-sideband (SSB) multi-carrier source based on a recirculating frequency shifter (RFS) is anal- ysed theoretically and realized experimentally. The effects of affecting factors originating from ...Generation of single-sideband (SSB) multi-carrier source based on a recirculating frequency shifter (RFS) is anal- ysed theoretically and realized experimentally. The effects of affecting factors originating from the deviation from the right operation bias voltage and unbalanced amplitude, and the phase of the radio frequency (RF) drive signals on the performance of the multi-tone source are discussed in detail. Based on the theoretical analysis, high-quality 50-tone out- put is successfully realized. Experiments under some implementation imperfections are also carried out. The imperfect and low-quality output results are in good agreement with theoretical analysis.展开更多
文摘平坦光频梳可以用于精密测控系统,基于双平行马赫曾德尔调制器与循环移频方式,设计了一种级联式平坦光频梳生成系统。该系统采用两级结构,第一级利用相位调制器产生两个具有一定频率间隔的相干光载波,作为第二级循环移频环路的两个输入种子光,每个种子光在环路中通过循环移频的方式生成一个子光梳,两个子光梳再级联成一个带宽更大的光频梳。建立了系统的理论分析模型,并用VPI软件进行了系统仿真,利用该方案可以生成104线频率间隔为12.5 GHz,平坦度为1.31 d B的光频梳。仿真结果与理论分析相符。
基金Project supported by the National Natural Science Foundation of China (Grant No.60977049)the Chinese Universities Scientific Fund (Grant No.BUPT 2009RC0413)
文摘Generation of single-sideband (SSB) multi-carrier source based on a recirculating frequency shifter (RFS) is anal- ysed theoretically and realized experimentally. The effects of affecting factors originating from the deviation from the right operation bias voltage and unbalanced amplitude, and the phase of the radio frequency (RF) drive signals on the performance of the multi-tone source are discussed in detail. Based on the theoretical analysis, high-quality 50-tone out- put is successfully realized. Experiments under some implementation imperfections are also carried out. The imperfect and low-quality output results are in good agreement with theoretical analysis.