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MEMS Components for NMR Atomic Sensors

机译:NMR原子传感器的MEMS组件

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摘要

This paper introduces a batch fabrication method to manufacture micro-electromechanical system (MEMS) components for nuclear magnetic resonance (NMR) atomic sensors, such as NMR gyroscope (NMRG) and NMR magnetometer (NMRM). The components presented are: 1) micro-coils generating the magnetic field with the magnetic field homogeneity of$H=354$ppm; 2) spherical micro-fabricated atomic cells confining alkali metal and noble gases; 3) micro-heaters keeping the alkali metal in a vapor state while minimizing residual magnetic fields; and 4) origamilike silicon structures with integrated optical reflectors preserving 90.9% of the light polarization. The introduced design utilized a glassblowing process, origamilike folding, and a more traditional MEMS fabrication. We presented an analytical model of imperfections, including errors associated with micro-fabrication of MEMS components. In light of the developed error model, phenomenological dynamic model describing NMR sensors, and experimental evaluation of components, we predicted the effect of errors on performance of NMRG and NMRM. We concluded that with a realistic design, a 5-mrad angular misalignment between coils and folded mirrors, and a 100-$mu ext{m}$linear misalignment between folded coils, it would be feasible to achieve an NMRG with ARW 0.1 deg/rt-hr and an NMRM with sensitivity on the order of 10 fT/rt-Hz. [2018-0169]
机译:本文介绍了一种批处理方法,用于制造用于核磁共振(NMR)原子传感器的微机电系统(MEMS)组件,例如NMR陀螺仪(NMRG)和NMR磁强计(NMRM)。呈现的组件是:1)产生磁场的微线圈,其磁场均匀度为 n $ H = 354 $ nppm; 2)球形的微型原子电池,封闭碱金属和稀有气体; 3)微型加热器,使碱金属保持蒸气状态,同时使残留磁场最小化; 4)具有集成光学反射镜的折纸状硅结构,可保留90.9%的光偏振。引入的设计利用了玻璃吹制工艺,折纸式折叠和更传统的MEMS制造。我们提出了一个缺陷的分析模型,包括与微机电系统组件的微细加工有关的误差。根据开发的误差模型,描述NMR传感器的现象学动态模型以及组件的实验评估,我们预测了误差对NMRG和NMRM性能的影响。我们得出的结论是,通过现实的设计,线圈和折叠后视镜之间的角度偏差为5弧度,并且100- n $ mu text {m} $

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