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A high sensitivity remote hybrid heterodyne fiber magnetometer

机译:高灵敏度远程杂交外差纤维仪

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Hybrid fiber optic sensors use the optical fiber as a means for delivering an interrogating laser beam to a sensor element at the remote end of the fiber. Therefore, measurements can be made in environments where other sensor types cannot function because of adverse temperature, radiation conditions, EMP, RFI, or the presence of metals in the sensor element. The most sensitive hybrid fiber-optic sensors operate in a coherent scheme. Homodyne schemes suffer front phase drift problems, or the system can be sensitive to effects acting on the fiber that delivers the laser beam to the sensor element. We have minimized these problems by using a true heterodyne detection scheme in which two different laser frequencies propagate to the sensor element, but interact differently with it. The returning phase-or polarization-modulated beams are demodulated to provide real-time display of the measurand. Having both laser frequencies that are to be mixed propagating in the same fiber provides common-mode rejection of phase effects caused by the intrinsic sensing properties of the fiber itself.
机译:混合光纤传感器使用光纤作为用于将询问激光束输送到光纤偏远端的传感器元件的装置。因此,由于不利的温度,辐射条件,EMP,RFI或传感器元件中的金属存在,其他传感器类型不能起作用的环境中可以进行测量。最敏感的混合光纤传感器以相干方案运行。 Homodingne方案遭受前相漂移问题,或者系统可以对作用在纤维上的效果敏感,该效果将激光束传送到传感器元件。我们通过使用真正的外差检测方案来最小化这些问题,其中两个不同的激光频率传播到传感器元件,但与其不同。返回阶段或偏振调制光束被解调以提供测量的实时显示。具有在同一光纤中传播的混合传播的两个激光频率提供由光纤本身的内在感测性质引起的相位效应的共模抑制。

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