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A high-accuracy optical clock via three-level coherence in neutral bosonic $^{88}$Sr

机译:中性玻色$ ^ {88} $ Sr中具有三级相干性的高精度光学时钟

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摘要

An optical atomic clock scheme is developed that utilizes two lasers to establish coherent coupling between the $5s^2 \phantom{}^1S_0$ ground state of $^{88}$Sr and the first excited state, $5s5p \phantom{}^3P_0$. The coupling is mediated by the broad $5s5p \phantom{}^1P_1$ state, exploiting the phenomenon of electromagnetically induced transparency. The effective linewidth of the clock transition can be chosen at will by adjusting the laser intensity. By trapping the $^{88}$Sr atoms in an optical lattice, long interaction times with the two lasers are ensured; Doppler and recoil effects are eliminated. Based on a careful analysis of systematic errors, a clock accuracy of better than $2\times 10^{-17}$ is expected.
机译:开发了一种光学原子钟方案,该方案利用两个激光在$ ^ {88} $ Sr的$ 5s ^ 2 \ phantom {} ^ 1S_0 $基态与第一个激发态$ 5s5p \ phantom {}之间建立相干耦合^ 3P_0 $。耦合是由广泛的$ 5s5p \ phantom {} ^ 1P_1 $状态介导的,利用了电磁感应的透明现象。可以通过调整激光强度随意选择时钟转换的有效线宽。通过将$ ^ {88} $ Sr原子捕获在一个光学晶格中,可以确保与两个激光器的相互作用时间长;消除了多普勒效应和反冲效应。根据对系统错误的仔细分析,预期时钟精度将优于$ 2×10 ^ {-17} $。

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