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Research on the Automatic Frequency Modulation of Rubidium Frequency Standard

机译:Frequency频率标准自动调频技术研究

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摘要

The present status of rubidium atom frequency standard is introduced. The temperature coefficient of traditional Rb clock was mainly made from pump system and variode phase modulation circuit. After filling absorb cell with buffer gas of positive temperature coefficient and adjusting pumping light intensity properly, the temperature coefficient from pump system may be extremely less than that of rubidium frequency standard. Hence, the present temperature coefficient of Rb clock was mainly caused by variode phase modulation circuit. The scheme was pointed out that adopting the automatic frequency modulation to replace origin phase modulation circuit. In the experiment, it was mainly composed of singlechip, programmable time counter and phase lock loop. By properly adjusting the extent of square wave frequency modulation online, the temperature coefficient was not caused by modulation circuit. The performance of rubidium atom frequency standard is greatly improved.
机译:介绍了atom原子频率标准的现状。传统的Rb时钟的温度系数主要由泵浦系统和变压相调制电路决定。在用正温度系数的缓冲气体填充吸收池并适当调整泵浦光强度后,泵系统的温度系数可能会大大低于of频率标准的温度系数。因此,Rb时钟的当前温度系数主要是由变阻器相位调制电路引起的。方案指出,采用自动调频代替原点相位调制电路。在实验中,它主要由单片机,可编程时间计数器和锁相环组成。通过适当地在线调整方波频率调制的程度,温度系数不是由调制电路引起的。 atom原子频率标准的性能大大提高。

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