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A three-dimensional model of the gas cell atomic frequency standard

机译:气室原子频率标准的三维模型

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摘要

Initial calculations from a three-dimensional (3-D) model of the gas cell atomic frequency standard are discussed. In particular, a recent suggestion that the short-term stability of a gas cell standard might be improved by varying the microwave power is considered. Though the authors' results generally support the previous conclusion, they show that the degree of sensitivity is less than that predicted by one-dimensional (1-D) gas-cell frequency-standard model. This difference in predicted sensitivity is a manifestation of the three-dimensional model's more accurate treatment of the clock-cavity microwave field distribution. The more accurate treatment is highlighted by the three-dimensional model's determination of isoefficiency contours (contours showing spatial regions in the clock cavity that have equal efficiency for producing clock signal), and noting their spatial dependence on microwave power.
机译:讨论了基于气室原子频率标准的三维(3-D)模型的初始计算。特别地,考虑到最近的建议,即可以通过改变微波功率来改善气室标准的短期稳定性。尽管作者的结果总体上支持先前的结论,但他们表明灵敏度的程度小于一维(1-D)气室频率标准模型所预测的程度。预测灵敏度的这种差异是三维模型对钟腔微波场分布的更精确处理的体现。三维模型确定等效率轮廓(等高线表示在时钟腔中具有产生时钟信号的相同效率的空间区域的轮廓),并指出它们对微波功率的空间依赖性,这突出了更精确的处理方法。

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