Microfabricated Bubble-in-Bubble Alkali Vapor Cell for 3-D Atomic Sensors

Wenqi Li, Jintang Shang
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Abstract

This paper reports, for the first time, a novel microfabricated bubble-in-bubble alkali vapor cell. The wafer-level bubble-in-bubble structure is capable of simultaneous thermoforming within a foaming process, followed by approximate gas pressure filling between the two bubbles, which could eliminate the direct contact between the internal bubble and the external environment. The bubble-in-bubble structure will effectively reduce the leakage of the 3-D alkali vapor cell and improve thermal stability by maintaining different gas pressure in the outer bubble. A finite element model (FEM) is presented to simulate the fabrication process and various sizes (inner bubble height of 2.7 mm and outer bubble heights of 3.2 mm, 4.3 mm, and 5.2 mm) of bubble-in-bubble structures are demonstrated by experimental at a wafer level. The bubble-in-bubble vapor cells are potentially useful for highly reliable 3-D atomic sensors.
用于三维原子传感器的微加工泡中泡碱蒸气电池
本文首次报道了一种新型微加工泡中泡碱蒸汽电池。这种晶圆级泡中泡结构能够在发泡过程中同时进行热成型,然后在两个气泡之间进行近似气压填充,从而消除了内部气泡与外部环境的直接接触。这种 "泡中泡 "结构可有效减少三维碱蒸气电池的泄漏,并通过在外部气泡中保持不同的气体压力来提高热稳定性。本文提出了一个有限元模型(FEM)来模拟制造过程,并通过晶圆级实验演示了各种尺寸(内泡高度为 2.7 毫米,外泡高度为 3.2 毫米、4.3 毫米和 5.2 毫米)的泡中泡结构。气泡中气泡蒸发单元可用于高可靠性的三维原子传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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