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CPT Cesium-Cell Atomic Clock Operation With a 12-mW Frequency Synthesizer ASIC

机译:使用12mW频率合成器ASIC的CPT铯电池原子时钟操作

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摘要

In this paper, we present the design, fabrication, and electrical characterization of a low-power microwave source for interrogation of cesium atomic hyperfine transition frequency using the coherent population trapping (CPT) technique. The 4.6-GHz frequency generation and signal buffering is performed by a single-chip frequency synthesizer ASIC with a frequency tuning resolution of 1 x 10 and a programmable RF output power from -10 to 0 dBm. The circuit was used to modulate the current of a vertical-cavity surface-emitting laser through a dedicated impedance matching network and low thermal conductivity transmission line. Strong modulation sidebands with >60% of carrier amplitude were obtained with an ASIC power consumption of 12 mW. The system was used as optical source for atomic interrogation in an experimental cesium CPT clock. The measured clock stability of 5 x 10 at τ = 1 s, going down to 4.5 x 10 at τ = 200 s, is limited by the signal-to-noise ratio of the detected CPT signal.
机译:在本文中,我们介绍了一种低功率微波源的设计,制造和电学特性,该技术用于使用相干人口陷阱(CPT)技术询问铯原子超细过渡频率。 4.6 GHz频率生成和信号缓冲由单芯片频率合成器ASIC执行,其频率调谐分辨率为1 x 10,可编程RF输出功率为-10至0 dBm。该电路用于通过专用阻抗匹配网络和低热导率传输线调制垂直腔面发射激光器的电流。获得了具有> 60%载波幅度的强调制边带,其ASIC功耗为12 mW。该系统被用作实验铯CPT时钟中用于原子询问的光源。在τ= 1 s时测得的5 x 10时钟稳定性,在τ= 200 s时降至4.5 x 10,受检测到的CPT信号的信噪比限制。

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