为了提高频综的频谱纯度,提出了一种新型多级子谐波混频锁相环的设计方法,研制了一款超低相噪频综。介绍了该频综的设计方案,分析了关键技术,仿真和论证了相位噪声和杂散抑制等主要指标,最后对该频综进行了研制和实际测试。测试结果如下...为了提高频综的频谱纯度,提出了一种新型多级子谐波混频锁相环的设计方法,研制了一款超低相噪频综。介绍了该频综的设计方案,分析了关键技术,仿真和论证了相位噪声和杂散抑制等主要指标,最后对该频综进行了研制和实际测试。测试结果如下:工作频率为4 500~7 600 MHz,频率步进小于1 k Hz,相位噪声优于-123 d Bc/Hz@25 k Hz,频率切换速度小于75μs,杂散抑制大于70 d B,均满足设计要求,设计方案比较合理可行。采用该方法设计的频综具有小步进、低相噪、换频速度快、低杂散等特点,可用于高性能电子战接收机中,具有广阔的应用前景。展开更多
We have demonstrated the Autler-Townes (AT) splitting of the four-wave mixing (FWM) process and the six-wave mixing (SWM) process in an elec tromag netically induced transparency (EIT) window in five-level atomic vapo...We have demonstrated the Autler-Townes (AT) splitting of the four-wave mixing (FWM) process and the six-wave mixing (SWM) process in an elec tromag netically induced transparency (EIT) window in five-level atomic vapor of 87 Rb. Moreover we discuss interactions of multi-dressed states. The experimental results agree well with the theoretical analysis.展开更多
文摘为了提高频综的频谱纯度,提出了一种新型多级子谐波混频锁相环的设计方法,研制了一款超低相噪频综。介绍了该频综的设计方案,分析了关键技术,仿真和论证了相位噪声和杂散抑制等主要指标,最后对该频综进行了研制和实际测试。测试结果如下:工作频率为4 500~7 600 MHz,频率步进小于1 k Hz,相位噪声优于-123 d Bc/Hz@25 k Hz,频率切换速度小于75μs,杂散抑制大于70 d B,均满足设计要求,设计方案比较合理可行。采用该方法设计的频综具有小步进、低相噪、换频速度快、低杂散等特点,可用于高性能电子战接收机中,具有广阔的应用前景。
文摘We have demonstrated the Autler-Townes (AT) splitting of the four-wave mixing (FWM) process and the six-wave mixing (SWM) process in an elec tromag netically induced transparency (EIT) window in five-level atomic vapor of 87 Rb. Moreover we discuss interactions of multi-dressed states. The experimental results agree well with the theoretical analysis.