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An integral resonant controller approach to frequency locking an optical cavity

机译:频率锁定光学腔的积分谐振控制器方法

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This paper presents the application of an integral resonant controller (IRC) to the problem of frequency locking an optical cavity. Such frequency locking is necessary to ensure maximum constructive interference inside the cavity. This is achieved by altering the resonant frequency of the optical cavity to match the frequency of the input laser. The optical cavity is characterized as a negative imaginary system in the desired frequency range and a strict negative imaginary IRC is designed for locking such a cavity. We show in simulation that the internal stability of the positive feedback interconnection of the plant and the IRC is guaranteed as long as a certain DC gain condition is satisfied, as mentioned in previous theoretical results. Experimental frequency response data for the plant, comprising of a three-mirror ring cavity and a piezoelectric actuator is used. This data is used to obtain a model for the plant using methods of system identification which is then used to design an IRC. A unit step response is obtained to check for the performance of the controller in closed-loop.
机译:本文介绍了整体谐振控制器(IRC)到频率锁定光学腔的问题。需要这种频率锁定,以确保腔内的最大建设性干扰。这是通过改变光学腔的谐振频率来实现,以匹配输入激光的频率。光学腔的特征在于期望的频率范围中的负假想系统,并且设计用于锁定这种腔的严格的负虚数IRC。我们在模拟中显示了植物和IRC的正反馈互连的内部稳定性,只要满足某个直流增益条件,如先前的理论结果中所述。使用植物的实验频率响应数据,包括三镜环腔和压电致动器。该数据用于使用系统识别方法获得工厂的模型,然后使用该方法来设计IRC。获得单位步骤响应以检查控制器在闭环中的性能。

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