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Frequency standards and measurement

机译:频率标准和测量

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摘要

The two time scales furnished by astronomical measurements have differed by up to 30 seconds in time or 7 parts in 108 in frequency. The atomic unit defined in terms of the caesium hyperfine line is accurate to within 1 part in 1011. The rubidium gas-cell standard is a convenient small working standard and the hydrogen maser a potential standard of high accuracy. Modern developments in solid state physics have greatly simplified the techniques of pulse counting and frequency synthesis. The methods used for generating and measuring the frequencies of the caesium and rubidium hyperfine lines are given as illustrations of current techniques.
机译:天文测量提供的两个时标的时间差异最大为30秒,频率差异为7分之108。用铯超细线定义的原子单位精确到1011年的1份之内。.气室标准是一个方便的小工作标准,而氢气则是高精度的潜在标准。固态物理学的现代发展大大简化了脉冲计数和频率合成技术。给出了用于产生和测量铯和rub超细线的频率的方法,作为当前技术的说明。

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