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A Lamp-Pumped Rubidium Atomic Frequency Standard with a Short-Term Stability at the Level of 2 × 10~(-13)τ~(-1/2)

机译:短期稳定性为2×10〜(-13)τ〜(-1/2)的灯泵浦Rub原子频率标准

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A high-performance lamp-pumped rubidium atomic frequency standard (RAFS) prototype is developed. In the physics package of the RAFS, a rubidium spectral lamp with Xe as the starting gas and the isotope filtering technique are used to depress the optical shot noise of atomic signal. 30 mm-diameter absorption and filter cells located in a slotted-tube microwave cavity are utilized to increase the amplitude of clock transition signal. For the electronic system, a new low phase noise microwave chain is developed. The frequency stability measurement of the prototype shows a short-term frequency stability of 2.1 × 10~(-13)τ~(-1/2) within 1 s-100 s. This is the best short-term stability result for rubidium clock obtained so far, suggesting that the stability of the traditional RAFS could be comparable to that of the laser-pumped RAFS.
机译:开发了高性能灯泵浦atomic原子频率标准(RAFS)原型。在RAFS的物理软件包中,使用了以Xe为起始气体的id光谱灯和同位素过滤技术来抑制原子信号的光散粒噪声。位于缝隙管式微波腔中的直径为30 mm的吸收和过滤单元可用于增加时钟转换信号的幅度。对于电子系统,开发了一种新的低相位噪声微波链。原型的频率稳定度测量显示,在1 s-100 s内,短期频率稳定度为2.1×10〜(-13)τ〜(-1/2)。这是迄今为止获得的clock时钟最佳的短期稳定性结果,这表明传统RAFS的稳定性可以与激光泵浦RAFS的稳定性相媲美。

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