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首页> 外文期刊>IEEE sensors journal >Fringe Disappearance in Self-Mixing Interferometry Laser Sensors: Model and Application to the Absolute Distance Measurement Scheme
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Fringe Disappearance in Self-Mixing Interferometry Laser Sensors: Model and Application to the Absolute Distance Measurement Scheme

机译:自混合干涉激光传感器中的条纹消失:绝对距离测量方案的模型和应用

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摘要

The fringes disappearance phenomenon in the self-mixing interferometry occurs whenever the external round-trip phase at free-running state is modulated by either external modulation such as external cavity length changes or internal modulation when the laser injection current is modulated with a high back-scattered light power. This phenomenon has been observed by many authors for harmonic motion or vibration application and more recently in the case of the absolute distance measurement scheme when the laser injection current is modulated in the triangle waveform. However, there are no clear explanations on the fringes disappearance phenomenon and its dependence on the self-mixing regimes. In this paper, a novel approach that depicts the mechanism of interferometric fringes disappearance is proposed that highlight with a new perspective the impact of the coupling strength between the laser and the external cavity on the number of missing fringes. The proposed modeling is validated by a set of measurements using the optical feedback interferometry absolute distance measurement scheme.
机译:自混合干涉仪中的条纹消失现象会在自由运行状态下的外部往返相位通过外部调制(例如外部腔体长度变化)或内部调制(通过高反向电流调制激光注入电流)进行调制时发生散射光功率。对于谐波运动或振动应用,许多作者已经观察到这种现象,最近,在绝对距离测量方案中,当将激光注入电流调制为三角波时,已经观察到这种现象。但是,对于条纹消失现象及其对自混合机制的依赖性,没有明确的解释。在本文中,提出了一种描述干涉条纹消失机理的新颖方法,该方法以新的视角突出了激光器和外腔之间的耦合强度对缺失条纹数量的影响。通过使用光反馈干涉术绝对距离测量方案的一组测量结果验证了所提出的建模。

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