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Suppression of the Bias Error Induced by Magnetic Noise in a Spin-Exchange Relaxation-Free Gyroscope

机译:自旋交换无弛豫陀螺仪中磁噪声引起的偏置误差的抑制

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摘要

Spin-exchange relaxation-free gyroscope (SERFG) is a promising rotation sensor, and the bias error is one of its most important characteristics. It is identified that rotation measurement noise induced by thermal magnetization fluctuations inherent in the ferrite shield in a SERFG limits its bias stability. The root cause of this error lies in the low-frequency magnetic field sensitivity dominated by the nuclear spin relaxation rate. In this paper, the steady state response model of the SERFG is modified considering the non-negligible nuclear relaxation rate and the pressure-dependent magnetic field sensitivity is experimentally studied. Our results show that reducing nuclear spin relaxation is an effective method to suppress the bias error induced by thermal magnetization fluctuations. Finally, in case of Pneon = 1 atm, it is estimated that a bias stability limit of 5 x 10(-4) deg/h is set by the lowest thermal magnetization noise of 4.4 f(-1/2) fT ever reported in a ferrite shield.
机译:自旋交换无松弛陀螺仪(SERFG)是一种很有前途的旋转传感器,其偏置误差是其最重要的特性之一。可以确定,由SERFG中铁氧体屏蔽层固有的热磁化波动引起的旋转测量噪声会限制其偏置稳定性。此错误的根本原因在于,核自旋弛豫率主导的低频磁场灵敏度。在本文中,考虑到了不可忽略的核弛豫率,对SERFG的稳态响应模型进行了修改,并通过实验研究了压力依赖性磁场的敏感性。我们的结果表明,减少核自旋弛豫是抑制由热磁化波动引起的偏置误差的有效方法。最后,在Pneon = 1 atm的情况下,据估计,有史以来报道的最低热磁化噪声4.4 f(-1/2)fT将偏置稳定性极限设置为5 x 10(-4)deg / h。铁氧体屏蔽层。

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