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A Rubidium Atomic Frequency Standard with Stability at 10~(-15) Level Operated Under Atmospheric Condition

机译:铷原子频率标准,稳定性在10〜( - 15)水平下,在大气条件下运行

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摘要

Among several kinds of traditional atomic clocks, rubidium atomic clock shows more extensive applications for its small size, low power and simple structure. In last 20 years, driven by the demands of satellite navigation and relevant fields, the Rb atomic clock has been greatly improved on its frequency stability. Now the long-term stability of satellite-borne Rb atomic clock is better than 5 × 10~(-15) at one day. However, when Rb clock runs under atmospheric condition, its long-term stability performance deteriorate seriously. There is a 10 to 100 times deterioration at 10~4 s and one day, which makes Rb clock impossible to reach 10~(-15) level. For solving these problems, to develop a high-stability, low-drift and compact-structure type of high performance Rb clock which could fit the atmospheric environment, we conducted a sufficient research on high-performance Rb clock's environment adaptation. Finally, we developed a prototype whose stability reached 6.5 × 10~(-13)/τ~(1/2), 7.0 × 10~(-15) at 10~4 s and 5.0 × 10~(-15) at one day.
机译:在几种传统的原子钟中,铷原子钟为其体积小,功耗和简单的结构提供了更广泛的应用。在过去的20年中,由卫星导航和相关领域的需求驱动,RB原子钟在其频率稳定性上大大提高。现在,卫星RB原子钟的长期稳定性在一天内优于5×10〜(-15)。然而,当RB时钟在大气条件下运行时,其长期稳定性性能严重恶化。 10〜4 S且有一天有10至100倍,这使得RB时钟不可能达到10〜( - 15)水平。为了解决这些问题,为了开发能够适应大气环境的高稳定性,低漂移和紧凑型结构类型的高性能RB时钟,我们对高性能RB时钟的环境适应进行了足够的研究。最后,我们开发了一个原型,其稳定达到6.5×10〜(-13)/τ〜(1/2),7.0×10〜(-15),在一个1〜4 s和5.0×10〜(-15)。日。

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