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Low drift nuclear spin gyroscope with probe light intensity error suppression 被引量:4
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作者 Wenfeng Fan Wei Quan +2 位作者 Feng Liu Lihong Duan Gang Liu 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第11期129-133,共5页
A nuclear spin gyroscope based on an alkali-metal–noble-gas co-magnetometer operated in spin-exchange relaxationfree(SERF) regime is a promising atomic rotation sensor for its ultra-high fundamental sensitivity. Howe... A nuclear spin gyroscope based on an alkali-metal–noble-gas co-magnetometer operated in spin-exchange relaxationfree(SERF) regime is a promising atomic rotation sensor for its ultra-high fundamental sensitivity. However, the fluctuation of probe light intensity is one of the main technical error sources that limits the bias stability of the gyroscope. Here we propose a novel method to suppress the bias error induced by probe light intensity fluctuations. This method is based on the inherent magnetic field response characteristics of the gyroscope. By the application of a bias magnetic field, the gyroscope can be tuned to a working point where the output signal is insensitive to probe light intensity variation, referred to herein as ‘zero point’, thus the bias error induced by intensity fluctuations can be completely suppressed. The superiority of the method was verified on a K–Rb–21 Ne co-magnetometer, and a bias stability of approximately 0.01°/h was obtained. In addition, the method proposed here can remove the requirement of the closed-loop control of probe light intensity, thereby facilitating miniaturization of the gyroscope volume and improvement of reliability. 展开更多
关键词 nuclear spin gyroscope spin-EXCHANGE relaxation-free ERROR SUPPRESSION PROBE light intensity
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一种SERF陀螺仪核自旋自补偿点存在条件判定方法 被引量:1
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作者 董丽红 高洪宇 +3 位作者 王建龙 张俊峰 裴闯 赵小明 《中国惯性技术学报》 EI CSCD 北大核心 2021年第6期827-831,共5页
核自旋自补偿技术是无自旋交换弛豫(SERF)原子自旋陀螺仪角速率测量的关键。但是,并不是所有条件下SERF系统自补偿点均存在。根据SERF陀螺仪动力学演化机理,通过数学极值法推导出核自旋自补偿点存在条件判定方法,即Δ值是否满足不小于0... 核自旋自补偿技术是无自旋交换弛豫(SERF)原子自旋陀螺仪角速率测量的关键。但是,并不是所有条件下SERF系统自补偿点均存在。根据SERF陀螺仪动力学演化机理,通过数学极值法推导出核自旋自补偿点存在条件判定方法,即Δ值是否满足不小于0的条件,并分析了影响核自旋自补偿点存在的主要因素。通过延长核自旋弛豫时间及提高核自旋极化率不仅能实现自补偿点的存在条件,还能有效提升核自旋自补偿能力,为在有限条件下提高SERF陀螺性能提供了理论指导。实验测试了不同核自旋弛豫时间及极化率下系统自补偿点存在情况,结果与理论预期相符,验证了该判定方法的有效性。所提方法补充了核自旋自补偿成立条件,完善了核自旋自补偿理论体系,为实现高精度工程化SERF陀螺仪提供理论基础。 展开更多
关键词 核自旋自补偿 无自旋交换弛豫陀螺仪 自旋弛豫 自旋极化率
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