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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Precision measurement of fermionic collisions using an 87Sr optical lattice clock with 1 × 10-16 inaccuracy
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Precision measurement of fermionic collisions using an 87Sr optical lattice clock with 1 × 10-16 inaccuracy

机译:使用具有1×10-16不准确度的87Sr光学晶格时钟精确测量费米离子碰撞

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摘要

We describe recent progress on the JILA Sr optical frequency standard, which has a systematic uncertainty at the 10-16 fractional frequency level. The dominant contributions to the systematic error are from blackbody radiation shifts and collisional shifts. We discuss the blackbody radiation shift and propose measurements and experimental protocols that should reduce its systematic contribution. We discuss how collisional frequency shifts can arise in an optical lattice clock employing fermionic atoms, and experimentally demonstrate how the uncertainty in this density-dependent correction to the clock frequency is reduced.
机译:我们描述了JILA Sr光学频率标准的最新进展,该标准在10-16分数频率水平上具有系统不确定性。对系统误差的主要贡献来自黑体辐射位移和碰撞位移。我们讨论了黑体辐射位移,并提出了应减少其系统贡献的测量方法和实验方案。我们讨论了在使用铁离子原子的光学晶格时钟中如何发生碰撞频率偏移,并实验证明了如何降低这种对时钟频率的密度依赖性校正的不确定性。

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