Vapor-Cell-Based Atomic Electrometry for Detection Frequencies below 1 kHz

Y. Jau, T. Carter
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引用次数: 30

Abstract

Rydberg-assisted atomic electrometry using alkali-metal atoms contained inside a vacuum environment for detecting external electric fields (E-fields) at frequencies $<$ a few kHz has been quite challenging due to the low-frequency E-field screening effect that is caused by the alkali-metal atoms adsorbed on the inner surface of the container. We report a very slow E-field screening phenomenon with a time scale up to $\sim$ second on a rubidium (Rb) vapor cell that is made of monocrystalline sapphire. Using this sapphire-made Rb vapor cell with optically induced, internal bias E-field, we demonstrate vapor-cell-based, low-frequency atomic electrometry that responds to the E-field strength linearly. Limited by the given experimental conditions, this demonstrated atomic electrometer uses an active volume of 11 mm$^3$ and delivers a spectral noise floor around $0.34$ (mV/m)/$\sqrt{\rm Hz}$ and the 3-dB low cut-off frequency around 770 Hz inside the vapor cell. This work investigates a regime of vapor-cell-based atomic electrometry that was seldom studied before, which may enable more applications that utilize atomic E-field sensing technology.
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探测频率低于1khz的气相电池原子电测定法
利用真空环境中含有的碱金属原子来检测频率为$<$几千赫的外部电场(e场)的里德堡辅助原子电滴定法非常具有挑战性,因为在容器内表面吸附的碱金属原子会产生低频e场筛选效应。我们报道了一种非常缓慢的电场筛选现象,时间尺度高达$\sim$秒,在单晶蓝宝石制成的铷(Rb)蒸汽电池上。利用这种蓝宝石制成的带有光学诱导的内部偏置电场的Rb蒸汽电池,我们展示了基于蒸汽电池的低频原子电测量,该电测量与电场强度呈线性响应。受给定实验条件的限制,该演示的原子静电计使用11 mm的有源体积$^3$,并在$0.34$ (mV/m)/ $\sqrt{\rm Hz}$附近提供光谱底噪声,并在蒸气池内提供3db低截止频率,约770 Hz。这项工作研究了一种以前很少研究的基于气相电池的原子电测定法,这可能会使利用原子e场传感技术的更多应用成为可能。
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