论文标题
装载的微波腔,用于紧凑的蒸汽电池钟
Loaded microwave cavity for compact vapor-cell clocks
论文作者
论文摘要
基于微波询问的蒸气电池设备提供了一个稳定且可靠的设置的稳定频率参考。进一步的小型化必须集中于优化包含微波腔和原子储层的物理包。在本文中,我们提出了一个基于介电圆柱谐振器的紧凑型腔细胞组件。该结构可容纳一个$ 0.9 \,\ mathrm {cm^3} $内部音量的时钟单元格,外部音量仅为$ 35 \,\ mathrm {cm^3} $。提出的设计旨在强烈降低原子钟的核心,同时保持高性能的短期稳定性($σ_y(τ)\ leq 5 \ times 10^{ - 13} { - 13} \,τ^{ - 1/2} $ Allan deaviation)。所提出的结构是根据磁场均匀性和原子场耦合的特征,该结构借助有限元元素计算。还分析了热灵敏度并实验表征。我们通过基于脉冲光泵送技术将紧凑型腔整合在rubidium时钟设置中,提出初步光谱的结果。获得的时钟信号与目标性能兼容。因此,加载式腔的方法是微型微波钟的可行设计选项。
Vapor-cell devices based on microwave interrogation provide a stable frequency reference with a compact and robust setup. Further miniaturization must focus on optimizing the physics package, containing the microwave cavity and atomic reservoir. In this paper we present a compact cavity-cell assembly based on a dielectric-loaded cylindrical resonator. The structure accommodates a clock cell with $0.9 \, \mathrm{cm^3}$ inner volume and has an outer volume of only $35 \, \mathrm{cm^3}$. The proposed design aims at strongly reducing the core of the atomic clock, maintaining at the same time high-performing short-term stability ($σ_y(τ) \leq 5\times 10^{-13} \,τ^{-1/2}$ standard Allan deviation). The proposed structure is characterized in terms of magnetic field uniformity and atom-field coupling with the aid of finite-elements calculations. The thermal sensitivity is also analyzed and experimentally characterized. We present preliminary spectroscopy results by integrating the compact cavity within a rubidium clock setup based on the pulsed optically pumping technique. The obtained clock signals are compatible with the targeted performances. The loaded-cavity approach is thus a viable design option for miniaturized microwave clocks.