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A sinusoidal phase-modulating fiber-optic interferometer insensitive to the intensity change of the light source

机译:对光源强度变化不敏感的正弦相位调制光纤干涉仪

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摘要

In a conventional laser-diode sinusoidal phase-modulating (LD-SPM) interferometer, the wavelength of the LD is modulated by varying its injection current. The intensity modulation concurrent with the wavelength modulation leads to measurement errors. A photothermal-modulation method has been proposed to decrease the intensity change of the LD; however, this method cannot be used to measure vibration with a high frequency, and the beam diameter is too large to be used to measure minute objects. In this paper, we propose LD-SPM fiber-optic interferometer, in which the effect of the intensity change of the light source on measurement is eliminated. The diameter of the light beam is less than 0.5 mm. Using this interferometer, we measured displacements of a mirror driven by a piezoelectric transducer. The measurement repeatability is less than 1 nm. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 11]
机译:在常规的激光二极管正弦相位调制(LD-SPM)干涉仪中,LD的波长通过改变其注入电流进行调制。与波长调制同时进行的强度调制会导致测量误差。已经提出了一种光热调制方法来减小LD的强度变化。但是,该方法不能用于测量高频振动,并且光束直径太大而不能用于测量微小的物体。在本文中,我们提出了LD-SPM光纤干涉仪,其中消除了光源强度变化对测量的影响。光束的直径小于0.5mm。使用该干涉仪,我们测量了由压电换能器驱动的反射镜的位移。测量重复性小于1nm。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:11]

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