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Microfabricated Shaped Rubidium Vapor Cell for Miniaturized Atomic Magnetometers

机译:小型化原子磁力计的微制造成形铷蒸气池

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摘要

In this letter, we present a novel microfabricated shaped rubidium vapor cell with 3 cm optical path length for miniaturized atomic magnetometers. The novel shaped rubidium vapor cells are manufactured by a wafer-level fabrication process, and the process consists of the following three steps sequentially: first, wet etching to form oblong shallow cavity arrays; second, anodic bonding, glass reflowing, and wet etching to obtain a glass wafer with shaped structures; third, anodic bonding and chemical reaction to obtain the wafer-level shaped rubidium vapor cells. A miniaturized atomic magnetometer using the novel shaped rubidium vapor cell is characterized in the geomagnetic environment. The performance of the novel shaped rubidium vapor cell is compared with the traditional microfabricated rubidium vapor cell of a “glass-silicon-glass” sandwich structure. Results show that the measured geomagnetic field is 47.85 μT. It is demonstrated that the dispersive signal's slope of the novel shaped rubidium vapor cell is 15 times larger than that of the traditional one. Results also indicate that the miniaturized atomic magnetometer working in the geomagnetic environment has a magnetic noise spectral density of 3.5 pT/Hz1/2 from 1 to 2 Hz.
机译:在这封信中,我们提出了一种新型的微制铷蒸气膜,具有3cm光路长度,用于小型化原子磁力计。通过晶片级制造工艺制造新型形状的铷蒸气电池,并且该方法由以下三个步骤组成:第一,湿法蚀刻以形成长型浅腔阵列;其次,阳极粘接,玻璃回流和湿法蚀刻,得到具有成形结构的玻璃晶片;第三,阳极键合和化学反应,得到晶片级形状铷蒸气细胞。使用新型形状的铷蒸气细胞的小型化原子磁力计的特征在于地磁环境。将新颖的铷蒸气细胞的性能与“玻璃 - 硅 - 玻璃”夹层结构的传统微制铷蒸气池进行比较。结果表明,测量的地磁场为47.85μT。结果表明,新型铷蒸气细胞的分散信号的斜率比传统的三倍的斜率为15倍。结果还表明,在地磁环境中工作的小型化原子磁力计具有3.5pt / hz的磁噪声谱密度 1/2 从1到2 Hz。

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