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Characterization of the gravity gradiometer based on the Sr optical clock transition

机译:基于Sr光学时钟转换的重力梯度仪的特性

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We present a gravity gradiometer with the strontium optical clock transition by integrating a double lattice launch technique to develop two atomic samples vertically and a new method to add an artificial phase shift between two samples. We experimentally characterize the launch performance and the robustness of adding the artificial phase shift. The tunable differential phase shift is particularly important for characterizing the performance of a gravity gradiometer when the separation of the two clouds is limited by the geometrical constraints. Moreover, numerical simulation results indicate that the systematic error of the differential phase measurement can be largely reduced when the ellipse phase approaches ±π/2 rad by simply tuning the relative phase between two RF signals.
机译:我们通过整合双格子发射技术来展示具有锶光学时钟转换的重力梯度计,以垂直开发两个原子样品,以及在两个样品之间添加人工相移的新方法。我们通过实验表征发射性能和添加人工相移的鲁棒性。当两云的分离受几何约束的限制时,可调谐差分相移尤其重要。此外,数值模拟结果表明,当椭圆相位通过简单地调谐两个RF信号之间的相对相位时,差分相位测量的系统误差可以很大程度上减小。

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