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Magnetic Gradient Measurement Using Micro-Fabricated Shaped Rubidium Vapor Cell

机译:使用微型异型Rub蒸气池进行磁梯度测量

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This paper presents a novel method to measure the magnetic gradient by an Mz atomic magnetometer using a micro-fabricated shaped rubidium vapor cell. The shaped vapor cell is fabricated by a chemical foaming process. Four micro radio frequency (RF) coils are mounted on the shaped rubidium vapor cell. Magnetic fields at the four points corresponding to the RF coils along the laser beam propagation are obtained by measuring Larmor frequency of the rubidium atoms inside the vapor cell. The magnetic gradients are also acquired with the measured magnetic fields. The measurement is performed in a magnetic shield environment. A dc electrical coil is taken to produce an existed magnetic field for the measurement and the theoretical magnetic field distribution is calculated. It is demonstrated that the measured magnetic fields and magnetic gradients correspond well with the calculated ones. Results show that the absolute error of the magnetic field is less than 0.1 mu T, the relative error of the magnetic field is below 0.8%, and the relative error of the magnetic gradient is below 5.5%. Results also indicate that the atomic magnetometer has a sensitivity of 5 pT/Hz(1/2) from 1 to 2 Hz. The Mz atomic magnetometer is potentially useful for applications requiring gradient field information.
机译:本文提出了一种新颖的方法,该方法利用Mz原子磁强计使用微加工的异型vapor蒸汽电池来测量磁梯度。成形的蒸气室通过化学发泡工艺制成。四个微型射频(RF)线圈安装在成形的vapor蒸气池上。通过测量蒸气室内的atoms原子的拉莫尔频率,可以获得与沿着激光束传播的射频线圈相对应的四个点处的磁场。磁梯度也可以通过测得的磁场来获取。该测量在磁屏蔽环境中进行。取一个直流电线圈产生一个存在的磁场进行测量,并计算出理论磁场分布。结果表明,测得的磁场和磁梯度与计算的磁场和磁梯度非常吻合。结果表明,磁场的绝对误差小于0.1μT,磁场的相对误差小于0.8%,磁梯度的相对误差小于5.5%。结果还表明,原子磁力计在1至2 Hz范围内的灵敏度为5 pT / Hz(1/2)。 Mz原子磁力仪可能对于需要梯度场信息的应用很有用。

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