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首页> 外文期刊>Japanese journal of applied physics >Microfabricated alkali metal vapor cells filled with an on-chip dispensing component
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Microfabricated alkali metal vapor cells filled with an on-chip dispensing component

机译:填充有片上分配部件的微制造碱金属蒸汽电池

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摘要

This paper presents a microfabrication technique for vapor cells, filled with cesium (Cs), from an on-chip dispensing component. Wafer-level cell fabrication with a Cs dispenser has gained considerable attention for contributing to the high performance of miniaturized atomic devices. However, the large size of the dispenser and released residual gases can be limitations to miniaturization and the stability of atomic vapor. We present a cell structure that overcomes these limitations and offers a single-mask process with typical Si-based microfabrication at the wafer level. The cell consists of an optical cavity connected to a Cs-dispensing component via microchannels. Microfabricated Si grooves with multiple re-entrant microstructures are employed for effective Cs production from cesium azide. In our experiment, Cs was successfully filled in a cell by heating at 330 degrees C for 10 min. The stability of the Cs atomic density in the cell was confirmed over a period of 5 months.
机译:本文介绍了一种用于芯片(CS)的蒸汽细胞的微生物技术,来自片上分配组分。 具有CS分配器的晶片级细胞制造,可以显着地关注贡献小型化原子装置的高性能。 然而,大尺寸的分配器和释放的残余气体可能是对小型化的限制和原子蒸气的稳定性。 我们介绍了一种克服这些限制的细胞结构,并提供单个掩模过程,具有晶片水平的典型Si的微制造。 该电池包括通过微通道连接到CS分配部件的光学腔。 具有多重再参赛剂微结构的微制造SI槽用于从叠铯的有效CS产生。 在我们的实验中,通过在330℃下加热10分钟,Cs成功地在电池中填充。 在5个月内确认细胞中CS原子密度的稳定性。

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