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The absolute frequency of the ~(87)Sr optical clock transition

机译:〜(87)Sr光学时钟跃迁的绝对频率

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The absolute frequency of the ~(1)S_(0)-~(3)P_(0) clock transition of ~(87)Sr has been measured to be 429 228 004 229 873.65 (37) Hz using lattice-confined atoms, where the fractional uncertainty of 8.6 X 10~(-16) represents one of the most accurate measurements of an atomic transition frequency to date. After a detailed study of systematic effects, which reduced the total systematic uncertainty of the Sr lattice clock to 1.5 X 10~(-16), the clock frequency is measured against a hydrogen maser which is simultaneously calibrated to the US primary frequency standard, the NIST Cs fountain clock, NIST-F1. The comparison is made possible using a femtosecond laser based optical frequency comb to phase coherently connect the optical and microwave spectral regions and by a 3.5 km fibre transfer scheme to compare the remotely located clock signals.
机译:〜(87)Sr的〜(1)S_(0)-〜(3)P_(0)时钟跃迁的绝对频率已使用晶格约束原子测量为429228004229229873.65(37)Hz,其中8.6 X 10〜(-16)的不确定度分数表示迄今为止最准确的原子跃迁频率测量值之一。在对系统影响进行了详细研究之后,该系统将Sr晶格时钟的总系统不确定性降低到1.5 X 10〜(-16),然后针对氢激子测量了时钟频率,该氢激子同时已校准为美国主要频率标准,即NIST Cs喷泉时钟,NIST-F1。使用基于飞秒激光的光学频率梳将光学和微波光谱区域相位相干连接,并通过3.5 km光纤传输方案比较远程时钟信号,可以进行比较。

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