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Chapter 31 The Research of Miniaturization CPT Rb Atomic Clocks

机译:第31章小型化CPT Rb原子钟的研究

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Based on current situation of the study in this area, our work will introduce a miniature CPT atomic clock system with small physical size, high stability and lower power consumption. The use of our original innovational technology to fabricate small cells can avoid the complexity and difficulty of the anodic bonding technology. By this technology, we could accomplish the objective to minimize the occupied volume of the physical part of the system to 1 cm3. The single FPGA chip is the main part of the control circuit to accomplish the slower start-up of the laser, two necessary locking loops to make the system work, and the temperature control logic. Our 3.035 GHz RF signal is generated from a TCXO via the technology of DDS. Our prototype is a significant progress to realize CSAC with the use of the single FPGA chip. We demonstrate our CPT clock prototype with the volume less than 100 cm3. This prototype has frequency instability of 1 × 10~(-10) for 1 s and 3 × 10~(-11) for 1000 s.
机译:根据这一领域的研究现状,我们的工作将介绍一种体积小,稳定性高,功耗低的微型CPT原子钟系统。使用我们独创的创新技术来制造小型电池可以避免阳极键合技术的复杂性和困难。通过这种技术,我们可以实现将系统物理部分的占用体积最小化到1 cm3的目标。单个FPGA芯片是控制电路的主要部分,以完成激光器的较慢启动,两个必要的锁定环使系统正常工作,以及温度控制逻辑。我们的3.035 GHz射频信号是通过DDS技术从TCXO生成的。我们的原型是使用单个FPGA芯片实现CSAC的重大进步。我们演示了体积小于100 cm3的CPT时钟原型。该原型的频率不稳定性在1 s内为1×10〜(-10),在1000 s内为3×10〜(-11)。

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