在现场实时测量原子旋转陀螺仪中的电子旋转极化
Feng Li1,2, Haoying Pang1,2,3, Zhuo Wang2
1Institute of Large-scale Scientific Facility and Centre for Zero Magnetic Field Science, Beihang University, Beijing 100083, China.
iScience
|February 5, 2025
概括
这项研究引入了一种用于测量原子旋转陀螺仪 (ASG) 中电子旋转偏振的新方法. 这种实时测量技术提高了这些高精度惯性传感器的长期稳定性.
科学领域:
- 原子物理 原子物理
- 惯性传感技术 惯性传感技术
背景情况:
- 原子旋转陀螺仪 (ASG) 为惯性传感提供超高精度.
- 电子旋转极化波动限制了ASG的长期稳定性.
- 目前的方法缺乏有效的现场和实时电子自旋偏振测量.
研究的目的:
- 开发一种用于实地和实时测量电子自旋偏振的新方法.
- 改善ASG的闭环控制和长期稳定性.
主要方法:
- 开发了一种用于蒸汽电池的激光传播模型.
- 采用欧勒粒子群集优化 (PSO) 算法进行参数估计.
- 利用人工神经网络,根据激光功率和温度推导出电子自旋偏振的输出方程.
主要成果:
- 成功推导出一个输出方程,将电子自旋两极化与可测量的参数联系起来.
- 对比实验证实了拟议的测量方法的准确性.
- 干扰实验证明了该技术的实时能力.
结论:
- 拟议的现场实时电子自旋偏振测量方法是准确和有效的.
- 这种技术为增强ASG闭环控制提供了基础.
- 该方法预计将显著提高原子旋转陀螺仪的长期稳定性.
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