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Dynamics of an all-optical atomic spin gyroscope

机译:全光学原子自旋陀螺仪的动力学

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摘要

We present the transfer function of an all-optical atomic spin gyroscope through a series of differential equations and validate the transfer function by experimental test. A transfer function is the basis for further control system design. We build the differential equations based on a complete set of Bloch equations describing the all-optical atomic spin gyroscope, and obtain the transfer function through application of the Laplace transformation to these differential equations. Moreover, we experimentally validate the transfer function in an all-optical Cs-~(129)Xe atomic spin gyroscope through a series of step responses. This transfer function is convenient for analysis of the form of control system required. Furthermore, it is available for the design of the control system specifically to improve the performance of all-optical atomic spin gyroscopes.
机译:我们通过一系列微分方程展示了全光学原子自旋陀螺仪的传递函数,并通过实验测试验证了传递函数。传递函数是进一步控制系统设计的基础。我们基于描述全光学原子自旋陀螺仪的完整Bloch方程组建立微分方程,并通过将Laplace变换应用于这些微分方程来获得传递函数。此外,我们通过一系列阶跃响应实验验证了全光学Cs-〜(129)Xe原子自旋陀螺仪中的传递函数。该传递函数便于分析所需的控制系统形式。此外,还可用于控制系统的设计,专门用于提高全光学原子自旋陀螺仪的性能。

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