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Recent progress of development of cesium fountain primary frequency standard NMIJ-F2

机译:铯源一次频率标准NMIJ-F2的开发最新进展

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For our cesium fountain primary frequency standard, NMIJ-F2, uncertainty for most of the dominant physical effects such as the second-order Zeeman shift, the blackbody radiation shift, and the collisional shift has been evaluated. As for the microwave power dependence shift, when continuous microwave is fed into the Ramsey cavity, a frequency shift of +5×10-15is caused. The shift is greatly reduced to (+0.1±0.1)×10-15by turning off the microwave only for 10 ms after Ramsey interrogation. Instead, the phase transient of the microwave due to the switch may cause a frequency shift but has not been evaluated yet. Excluding the shift due to the microwave switch and the generally non-dominant shifts such as the light shift and the Ramsey pulling, the tentative type B uncertainty is evaluated to be 0.59×10-15. However, the frequency of NMIJ-F2 is different from International Atomic Time by 3 times the tentative uncertainty for the moment. We are considering that the problem will be solved by evaluating the phase transient due to the microwave switch.
机译:对于我们的铯喷泉主频率标准NMIJ-F2,已经评估了大多数主要物理效应(例如二阶塞曼位移,黑体辐射位移和碰撞位移)的不确定性。至于微波功率的依赖性偏移,当将连续微波馈入拉姆西腔时,频率偏移为+ 5×10 -15 造成。偏移大大减小为(+ 0.1±0.1)×10 -15 在Ramsey审讯后仅关闭微波10毫秒。取而代之的是,由于开关引起的微波的相位瞬变可能引起频率偏移,但尚未进行评估。排除由于微波开关引起的偏移和通常不占优势的偏移(例如光偏移和拉姆齐拉动),暂定的B型不确定性评估为0.59×10 -15 。但是,NMIJ-F2的频率与国际原子时的暂时不确定性相差3倍。我们正在考虑通过评估微波开关引起的相位瞬变来解决该问题。

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